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1.
Cysteine proteases of the papain family generally exhibit broadP1 specificity. A notable exception is papaya proteinase IV(PPIV), which only accepts Gly at this position. In all othercysteine proteases the S1 subsite residues 23 and 65 (papainnumbering) are absolutely conserved as Gly, while in PPIV theyare replaced by Glu and Arg, respectively. These differencesappear to underlie both PPIV specificity and its resistanceto inhibition by cystatins. To test this hypothesis, the equivalentresidues (Gly27 and Gly73) in the mammalian cysteine proteasecathepsin B were changed to Glu and Arg, respectively. Relativeto the wild-type enzyme, the Gly27Glu and Gly73Arg mutants showeda drastic reduction in activity with substrates containing aP1 Arg. In contrast, substrates having a Gly residue in P1 werehydrolyzed effectively. The double mutant (Gly27Glu:Gly73Arg)exhibited no detectable activity against any substrate studied.Inhibition of the Gly73Arg mutant by E-64 [1-(L-trans-epoxysuccinyl-L-leucylamino)-4-guanidinobutane]was found to be similar to that of the wild-type enzyme. Incontrast, inhibition by cystatin C exhibited a 20 000-fold reduction.These results demonstrate the dramatic influence of side chainsat sequence locations 27 and 73 on the S1 subsite specificityof cysteine proteases.  相似文献   

2.
Trpl20 of Aspergillus awamori glucoamylase has previously beenshown by chemical modification to be essential for activityand tentatively to be located near subsite 4 of the active site.To further test its role, restriction sites were inserted inthe cloned A.awamori gene around the Trpl20 coding region, andcassette mutagenesis was used to replace it with His, Leu, Pheand Tyr. All four mutants displayed 2% or less of the maximalactivity (kcat) of wild-type glucoamylase towards maltose andmaltoheptaose. MichaelLs constants (KM) of mutants decreased2- to 3-fold for maltose and were essentially unchanged formaltoheptaose compared with the wild type, except for a >3-fold decrease for maltoheptaose with the Trp120 – Tyrmutant. This mutant also bound isomaltose more strongly andhad more selectivity for its hydrolysis than wild-type glucoamylase.A subsite map generated from malto-oligosaecharide substrateshaving 2 – 7 D-glucosyl residues indicated that subsites1 and 2 had greater affinity for D-glucosyl residues in theTrp120 – Tyr mutant than in wild-type glucoamylase. Theseresults suggest that Trpl20 from a distant subsite is crucialfor the stabilization of the transition-state complex in subsites1 and 2.  相似文献   

3.
A model of the 3-D structure of a major house dust mite allergenDer p I associated with hypersensitivity reactions in humanswas built from its amino acid sequence and its homology to threeknown structures, papain, actinidin and papaya proteinase flof the cysteine proteinase family. Comparative modelling usingCOMPOSER was used to arrive at an initial model. This was refinedusing interactive graphics and energy minimization with theAMBER force field incorporated in SYBYL (Tripos Associates).Compatibility of the Der p I amino add sequence with the cysteineproteinase fold was checked using an environment-dependent aminoadd propensity table incorporated into a new program HARMONYwith a variable length windowing facility. A fiveresidue windowwas used to probe local conformational integrity. Propensitieswere derived from a structural alignment database of homologousproteins using a robust entropy-driven smoothing procedure.Der p I shares essential structural and mechanistic featureswith other papain-like cysteine proteinases, including cathepsinB. The active-site t iolate-imidazolium ion pair comprises theside chains of Cys34 and Hisl70. A cystine disulfide not presentin other known structures bridges residue 4 of an N-terminalextension and the core residue 117. Two conserved disulfidebridges are formed by residues 31 and 71 and residues 65 and103. Model building of peptide substrate analogue complexessuggests a preference for phenylalanyl or bask residues at theP2 position, whilst selectivity may be of minor importance atthe S1 subsite. The electrostatic influences on the Der p Iactive-site ion pair and extended peptide binding region aremarkedly different from those in known structures. A highlyimmunogenic surface exposed region (residues 107–131),comprising several overlapping T cell epitope sites, has noshared sequence identity with human liver cathepsin B and containsthree insertion-deletion sites. The structure provides a basisfor testing the substrate specificity of Der p I and the potentialrole of proteinase activity in hypersensitivity reactions. Thesestudies may offer a new treatment strategy by hyposensitizationwith inactive mutants or mutants with significantly alteredproteinase activity, either alone or complexed with antibody.  相似文献   

4.
A three-dimensional model of the 507–749 region of neutralendopeptidase-24.11 (NEP; E.C.3.4.24.11) was constructed integratingthe results of secondary structure predictions and sequencehomologies with the bacterial endopeptidase thermolysin. Additionaldata were extracted from the structure of two other metalloproteases,astacin and stromelysin. The resulting model accounts for themain biological properties of NEP and has been used to describethe environment close to the zinc atom defining the catalyticsite. The analysis of several thiol inhibitors, complexed inthe model active site, revealed the presence of a large hydrophobicpocket at the S1' subsite level. This is supported by the natureof the constitutive amino acids. The computed energies of boundinhibitors correspond with the relative affinities of the stereoisomersof benzofused macrocycle derivatives of thiorphan. The modelcould be used to facilitate the design of new NEP inhibitors,as illustrated in the paper.  相似文献   

5.
We have previously shown that replacing the P1-site residue(Ala) of chicken ovomucoid domain 3 (OMCHI3) with a Met or Lysresults in the acquisition of inhibitory activity toward chymotrypsinor trypsin, respectively. However, the inhibitory activitiesthus induced are not strong. In the present study, we introducedadditional amino acid replacements around the reactive siteto try to make the P1-site mutants more effective inhibitorsof chymotrypsin or trypsin. The amino acid replacement AspTyrat the P2' site of OMCHI3(P1Met) resulted in conversion to a35000-fold more effective inhibitor of chymotrypsin with aninhibitor constant (Ki) of 1.17x10–11 M. The Ki valueof OMCHI3(P1Met, P2'Ala) indicated that the effect on the interactionwith chymotrypsin of removing a negative charge from the P2'site was greater than that of introducing an aromatic ring.Similarly, enhanced inhibition of trypsin was observed whenthe AspTyr replacement was introduced into the P2' site of OMCHI3(P1Lys).Two additional replacements, AspAla at the P4 site and ArgAlaat the P3' site, made the mutant a more effective inhibitorof trypsin with a Ki value of 1.44x10–9 M. By contrast,ArgAla replacement at the P3' site of OMCHI3(P1Met, P2'Tyr)resulted in a greatly reduced inhibition of chymotrypsin, andAspAla replacement at the P4 site produced only a small changewhen compared with a natural variant of OMCHI3. These resultsclearly indicate that not only the P1-site residue but alsothe characteristics, particularly the electrostatic properties,of the amino acid residues around the reactive site of the proteaseinhibitor determine the strength of its interactions with proteases.Furthermore, amino acids with different characteristics arerequired around the reactive site for strong inhibition of chymotrypsinand trypsin.  相似文献   

6.
Residue 75 on the flap, a beta hairpin loop that partially coversthe active site cleft, is tyrosine in most members of the asparticproteinase family. Site-directed mutagenesis was carried outto investigate the functional role of this residue in Rhizomucorpusilus pepsin, an aspartic proteinase with high milk-clottingactivity produced by the fungus Rhizomucor pusillus. A set ofmutated enzymes with replacement of the amino acid at position75 by 17 other amino acid residues except for His and Gly wasconstructed and their enzymatic properties were examined. Strongactivity, higher than that of the wild-type enzyme, was foundin the mutant with asparagine (Tyr75Asn), while weak but distinctactivity was observed in Tyr75Phe. All the other mutants showedmarkedly decreased or negligible activity, less than 1/1000of that of the wild-type enzyme. Kinetic analysis of Tyr75Asnusing a chromogenic synthetic oligopeptide as a substrate revealeda marked increase in kcat with slight change in Km, resultingin a 5.6-fold increase in kcat/km. When differential absorptionspectra upon addition of pepstatin, a specific inhibitor foraspartic proteinase, were compared between the wild-type andmutant enzymes, the wild-type enzyme and Tyr75Asn, showing strongactivity, had spectra with absorption maxima at 280, 287 and293 nm, whereas the others, showing decreased or negligibleactivity, had spectra with only two maxima at 282 and 288 nm.This suggests a different mode of the inhibitor binding in thelatter mutants. These observations suggest a crucial role ofthe residue at position 75 in enhancing the catalytic efficiencythrough affecting the mode of substrate-binding in the asparticproteinases.  相似文献   

7.
The affinity labelling of bovine pancreatic ribonuclease A with6-chloropurine 5' ribonucleotide allowed us to postulate theexistence of a new phosphate-binding subsite, P2, adjacent tothe main purine-binding subsite. The study of this reactionin greater detail together with the study of a complex of theenzyme with the pentanucleotide pApUpApApG by means of modelbuilding and computer graphics indicate that at least five phosphategroups of the RNA molecule can interact with five positive regionsof the enzyme. In each one a lysine residue is present: Lys-104,-66, -41, -7 and -37 appear sequentially in the 5' – 3'direction. The distance between each lysine is 0.7–0.8nm, the same distance as that found between the phosphate groupson the RNA molecule. The study also enabled many amino acidresidues of the enzyme to be described as forming part of, orbeing near, the different binding subsites.  相似文献   

8.
The effect of the substitution of the active site histidine48 by the unnatural 1,2,4-triazole-3-alanine (TAA) amino acidanalogue in porcine pancreas phospholipase A2 (PLA2) was studied.TAA was introduced biosynthetically using a his-auxotrophicEscherichia coli strain. To study solely the effect of the substitutionof the active site histidine, two nonessential histidines (i.e.His17 and His 115) were replaced by asparagines, resulting ina fully active mutant enzyme (His-PLA2). In this His-PLA2 thesingle histidine at position 48 was substituted by TAA withan incorporation efficiency of about 90%, giving a mixture ofHis-PLA2 and TAA-PLA2. Based on the charge difference at acidicpH, both forms could be separated by FPLC, allowing for thepurification of TAA-PLA2 free from His-PLA2. At pH 6, TAA-PLA2has a fivefold reduced activity compared with His-PLA2. Thisreduced activity paralells a reduced rate of covalent modificationwith p-nitrophenacyl bromide of TAA-PLA2 compared with His-PLA2.Competitive inhibition gave comparable IC50 values for WT-PLA2,His-PLA2 and TAA-PLA2. These results indicate that the reductionin activity is not caused by a different affinity for the substrate,but more likely results from a reduced kcat value in TAA-PLA2.The enzymatic activities for native and mutant PLA2s were measuredat different pH values. For WT-PLA2 and His-PLA2 the activityis optimal at pH 6 and is strongly deminished at acidic pH,with no observable activity at pH 3. In contrast, TAA-PLA2 isas active at pH 3 as at pH 6. Most likely, the decrease in activityobserved for WT-PLA2 and His-PLA2 is caused by the protonationof the active site His48, which is the general base involvedin the activation of the nucleophilic water molecule. In TAA-PLA2,however, the active site residue TAA48 is unprotonated at bothpH 3 and 6 as a result of the low pKa of TAA compared with histidine.  相似文献   

9.
To change the substrate preference of carboxypeptidase Y theputative substrate binding pocket was subjected to random mutagenesis.Based upon the three-dimensional structure of a homologous enzymefrom wheat, we hypothesized that Tyr147, Leu178, Glu215, Arg216,Ile340 and Cys341 are the amino acid residues of carboxypeptidaseY that constitute S1 the binding pocket for the penultimateamino acid side chain of the substrate. We developed a new andgenerally applicable mutagenesis strategy to facilitate efficientscreening of a large number of mutants with multiple changesin carboxypeptidase Y. The key feature is the elimination ofwild type background by introducing a nonsense codon at eachtarget site for subsequent mutagenesis by degenerate oligonucleotides.The entire hypothesized S1 binding pocket and subsets of itwere subjected to saturation mutagenesis by this strategy, andscreening yielded a number of mutant enzymes which have up to150 times more activity (kcat/Km towards CBZ-LysLeu-OH thanthe wild type enzyme. All selected mutants with increased activityhave mutations at position 178. Mutagenesis of positions 215and 216 has virtually no effect on the activity, while mutatingpositions 340 and 341 generally reduces activity.  相似文献   

10.
The function of aspartic acid residue 101 in the active siteof Escherichia coli alkaline phosphatase was investigated bysite-specific mutagenesis. A mutant version of alkaline phosphatasewas constructed with alanine in place of aspartic acid at position101. When kinetic measurements are carried out in the presenceof a phosphate acceptor, 1.0 M Tris, pH 8.0, both the kcat andthe Km, for the mutant enzyme increase by –2-fold, resultingin almost no change in the kcat/Km ratio. Under conditions ofno external phosphate acceptor and pH 8.0, both the kcat andthe Km for the mutant enzyme decrease by {small tilde}2-fold,again resulting in almost no change in the kcat/Km ratio. Thekcat for the hydrolysis of 4-methyl-umbelliferyl phosphate andp-nitrophenyl phosphate are nearly identical for both the wild-typeand mutant enzymes, as is the K1 for inorganic phosphate. Thereplacement of aspartic acid 101 by alanine does have a significanteffect on the activity of the enzyme as a function of pH, especiallyin the presence of a phosphate acceptor. At pH 9.4 the mutantenzyme exhibits 3-fold higher activity than the wild-type. Themutant enzyme also exhibits a substantial decrease in thermalstability: it is half inactivated by treatment at 49°C for15 min compared to 71°C for the wild-type enzyme. The datareported here suggest that this amino acid substitution altersthe rates of steps after the formation of the phospho-enzymeintermediate. Analysis of the X-ray structure of the wild-typeenzyme indicates that the increase in catalytic rate of themutant enzyme in the presence of a phosphate acceptor may bedue to an increase in accessibility of the active site nearSerl02. The increased catalytic rate of this mutant enzyme maybe utilized to improve diagnostic tests that require alkalinephosphatase, and the reduced heat stability of the mutant enzymemay make it useful in recombinant DNA techniques that requirethe ability to heat-inactivate the enzyme after use.  相似文献   

11.
Nine single amino add mutations in the active site of Aspergillusawamori glucoamylase were made by cassette mutagenesis to alterthe pH dependence of the enzyme and to determine possible functionsof the mutated residues. The Glul79-Asp mutation expressed inyeast led to a very large decrease in kcat but to no changein Km, verifying this residue's catalytic function. Aspl76-Gluand Glul80-Asp mutations affected Km a more than kcat, implyingthat Aspl76 and Glul80 are involved in substrate binding orstructural integrity. The Leul77-Asp mutation decreased kcatonly moderately, probably by changing the position of the generalacid catalytic group, and did not affect Km. The Trpl78-Aspmutation greatly decreased kcat while increasing Km, showingthe importance of Trpl78 in the active site. Vall81-Asp andAsnl82-Asp mutations changed kinetk values little, suggestingthat Vall81 and Asnl82 are of minor catalytic and structuralimportance. Finally, insertions of Asp or Gly between residues176 and 177 resulted in almost complete loss of activity, probablycaused by destruction of the active site structure. No largechanges in pH dependence occurred in those mutations where kineticvalues could be determined, in spite of the increase in mostcases of the total negative charge. Increases in activationenergy of maltoheptaose hydrolysis in most of the mutant glucoamylasessuggested cleavage of individual hydrogen bonds in enzyme-substratecomplexes.  相似文献   

12.
The substrate-binding region of the cell-envelope proteinaseof Lactococcus lactis strain SK11 was modelled, based on sequencebomology of the catalytic domain with the serine proteinasessubtilisin and thermitase. Substitutions, deletions and insertionswere introduced, by site-directed and cassette mutagenesfe ofthe prtP gene encoding this enzyme, based on sequence comparisonboth with subtilisin and with the homologous L.lactis strainWg2 proteinase, which has different proteolytic properties.The engineered enzymes were investigated for thermal stability,proteolytic activity and cleavage specificity towards smallchromogenk peptide substrates and the peptide g1-casein(l–23).Mutations in the subtilisin-like substrate-binding region showedthat Ser433 is the active site residue, and that residues 138and 166 at either side of the binding cleft play an importantrole in substrate specificity, particularly when these residuesand the substrate are oppositely charged. The K748T mutationin a different domain also affected specificity and stability,suggesting that this residue is in close proximity to the subtilisin-likedomain and may form part of the substratebinding site. Severalmutant SK11 proteinases have novel properties not previouslyencountered in natural variants. Replacements of residues 137–139AKTalong one side of the binding cleft produced the 137–139GPPmutant proteinase with reduced activity and narrowed specificity,and the 137–139GLA mutant with increased activity andbroader specificity. Furthermore, the 137–139GDT mutanthad a specificity towards g1,-casein(l–23) closely resemblingthat of L.lactis Wg2 proteinase. Mutants with an additionalnegative charge in the binding region were more stable towardsautoproteolysis.  相似文献   

13.
Mutations around His15 which lie far away from the active site,stimulated glycol chitin activity of lysozyme at physiologicaltemperature. Del-Argl4Hisl5 lysozyme, a mutant lysozyme whoseArgl4 and Hisl5 were deleted together, and has the highest activityamong these mutant lysozymes, had a similar binding abilityto a trimer of N-acetyl-glucosamine, a substrate analogue, relativeto native lysozyme. This suggests that the increased activitywas due to an increased kcat in the catalysis reaction. TheH-D exchange rate of the N-1 proton in the Trp63 which is locatedin the active site cleft, was enhanced in the Del-Argl4Hisl5lysozyme, while 2-D proton NMR analysis revealed no conformationalchange around Trp63. We conclude that some sort of fluctuationat the active site might be required for the manifestation ofactivity. This theory is supported by the finding that the Del-Argl4Hisl5lysozyme showed a shift in temperature dependency of activityto lower temperatures compared with that of native lysozyme.  相似文献   

14.
The substitution of aspartate at position 153 in Escherichiacoli alkaline phosphatase by glycine results in a mutant enzymewith 5-fold higher catalytic activity (kcat but no change inKm at pH 8.0 in 50 mM Tris-HCl. The increased kcat is achievedby a faster release of the phosphate product as a result ofthe lower phosphate affinity. The mutation also affects Mg2+binding, resulting in an enzyme with lower metal affinity. The3-D X-ray structure of the D153G mutant has been refined at2.5 Å to a crystallographic Rfactor of 16.2%. An analysisof this structure has revealed that the decreased phosphateaffinity is caused by an apparent increase in flexibility ofthe guanidinium side chain of Argl66 involved in phosphate binding.The mutation of Aspl53 to Gly also affects the position of thewater ligands of Mg2+, and the loop Glnl52–Thrl55 is shiftedby 0.3 Å away from the active site. The weaker Mg2+ bindingof the mutant compared with the wild type is caused by an alteredcoordination sphere in the proximity of the Mg2+ ion, and alsoby the loss of an electrostatic interaction (Mg2+.COO-Aspl53)in the mutant Its ligands W454 and W455 and hydroxyl of Thrl55,involved in the octahedral coordination of the Mg2+ ion, arefurther apart in the mutant compared with the wild-type  相似文献   

15.
An efficient random mutagenesis procedure coupled to a replicaplate screen facilitated the isolation of mutant subtilisinsfrom Bacillus amyloliquefaciens that had altered autolytic stabilityunder alkaline conditions. Out of about 4000 clones screened,approximately 70 produced subtilisins with reduced stability(negatives). Two dones produced a more stable subtilisin (positives)and were identified as having a single mutation, either IIe107Valor Lys2l3Arg (the wild-type amino acid is followed by the codonposition and the mutant amino acid). One of the negative mutants,Met50Val, was at a site where other homologous subtilisins containeda Phe. When the Met50Phe mutation was introduced into the B.amyloliquefaciens gene, the mutant subtilisin was more alkalinestable. The double mutant IIe107Val/Lys2l3Arg) was more stablethan the isolated single mutant parents. The triple mutant (Met50Phe/IIel07Val/Lys2l3Arg)was even more stable than IIe107Val/Lys2l3Arg (up to two timesthe autolytic half-time of wild-type at pH 12). These studiesdemonstrate the feasibility for improving the alkaline stabilityof proteins by random mutagenesis and identifying potentialsites where substitutions from homologous proteins can improvealkaline stability.  相似文献   

16.
Carboxypeptidase Y is a serine carboxypeptidase isolated fromSaccharomyces cerevisiae with a preference for Cterminal hydrophobicamino acid residues. In order to alter the inherent substratespecificity of CPD-Y into one for basic amino acid residuesin P'1, we have introduced Asp and/or Glu residues at a numberof selected positions within the Si binding site. Hie effectsof these substitutions on the substrate specificity, pH dependenceand protein stability have been evaluated. The results presentedhere demonstrate that it is possible to obtain significant changesin the substrate preference by introducing charged amino acidsinto the framework provided by an enzyme with a quite differentspecificity. The introduced acidic amino acid residues providea marked pH dependence of the (kcat/Km)FA-A-R-OH/(kcatm)FA-A-R-OHratio. The change in stability upon introduction of Asp/Gluresidues can be correlated to the difference in the mean buriedsurfac surface area between the substituted and the substitutingamino acid. Thus, the effects of acidic amino acid residueson the protein stability depend upon whether the introducedamino acid protrudes from the solvent accessible surface asdefined by the surrounding residues in the wild type enzymeor is submerged below.  相似文献   

17.
Making tissue-type plasminogen activator more fibrin specific   总被引:2,自引:0,他引:2  
The fibrin specificity of tissue-type plasminogen activatorcan be increased by mutagenesis within at least four sites inthe protease domain. These sites include residue I276, the newN-terminus formed by conversion to a two-chain structure, residueson either side of the active site cleft, KHRR 296–299or DDD 364–366, a charged surface involved in fibrin interactions,which includes residues H432, R434, D460, R462 and a loop structure,PQANL 466–470, near the fibrin-binding patch. Variantswith mutations at any of these sites have low fibrinogen-stimulatedactivity, whereas fibrin-stimulated activity is at least normal.Kinetic analysis reveals that mutations at these positions reducethe kcat in the presence of fibrinogen, but leave the moleculeswith normal kinetic constants in the presence of fibrin. A significantexception is found at positions 296–299, where the presenceof fibrin manifests significant increases in both kcat and Km.Combinations of mutations at these sites appear to be additivewith respect to fibrin specificity.  相似文献   

18.
Alteration of catalytic properties of chymosin by site-directed mutagenesis   总被引:1,自引:0,他引:1  
Artificial mutations of chymosin by recombinant DNA techniqueswere generated to analyze the structure–function relationshipin this characteristic aspartk proteinase. In order to preparethe mutant enzymes in their active form, we established proceduresfor purification of correctly refolded prochymosin from inclusionbodies produced in Escherichia coli transformants and for itssubsequent activation. Mutagenesis by linker insertion intocDNA produced several mutants with an altered ratio of milkclotting activity to proteolytic activity and a different extentof stability. In addition to these mutants, several mutantswith a single amino acid exchange were also constructed by site-directedmutagenesis and kinetic parameters of these mutant enzymes weredetermined by using synthetic hexa- and octa-peptides as substrates.Exchange of Tyr75 on the flap of the enzyme to Phe caused amarked change of substrate specificity due to the change ofkcat or Km, depending on the substrate used. Exchange of Val110and Phe111 also caused a change of kinetic parameters, whichindicates functional involvement of these hydrophobic residuesin both the catalytic function and substrate binding. The mutantLys220–Leu showed a marked shift of the optimum pH tothe acidic side for hydrolysis of acid-denatured haemoglobinalong with a distinct increase in kcat for the octa-peptidein a wide pH range.  相似文献   

19.
The two main catalytic residues Cys25 and Hisl59 of the monomericcysteine protease papain are located on different walls of acleft formed by two domains. This topology suggests a possiblerelationship between relative domain organization and catalyticmechanism. The effect on enzymatic parameters of structuralmodifications at various locations of the twodomain interfaceof papain was examined by individual or double replacementsby Ala of pairs of interacting residues. Most modificationshad no effect on enzyme activity. However, the enzyme's substrateturnover (kcat) decreased following simultaneous alterationof the two most conserved residues, forming an apolar contactlocated 15 Å away from the active site. The pH activityprofile of the double mutant was unchanged, indicating a conservedionization state of the active site thiolate-imidazolium ionpair. This state is strongly dependent on the distance separatingthe two residues, thus suggesting that the active site geometryhas not been significantly altered. Efficient enzymatic activityin papain requires more than a correct active site geometryand is influenced by domain packing properties in a region remotefrom the active site.  相似文献   

20.
Synthetic oligodeoxynucleotides with single methyl phosphonate(mp) substitutions were used for an analysis of the contributionof phosphate contacts to the recognition of the cleavage siteby the restriction endonuclease EcoRV. Only in the last positionwithin the recognition sequence, is the methyl phosphonate substitutiontolerated by the enzyme. The wild-type enzyme cleaves the SPdiastereomer of the oligodeoxynucleotide GACGATATmpCGTC andthe unmodified sequence with equal rates, whereas the RP diastereomeris cleaved much more slowly. Inspection of the crystal structureof an EcoRV–DNA complex revealed that the non-bridgingoxygen atoms of the phosphodiester bond between the T and Cbases are in hydrogen bonding distance of the hydroxyl groupof the amino acid Thr94. We therefore tried to engineer a variantof EcoRV that would prefer a methyl phosphonate linkage overa normal phosphodiester bond and produced mutants with aminoacid exchanges at position 94. One of them, Thr94Val, showsa dramatically reduced activity towards the unmodified DNA anddoes not accept the Rp diastereomer, but cleaves the SP diastereomerwith the same rate as wild-type EcoRV. Its selectivity, i.e.the ratio of cleavage rates determined for the unmodified andmodified substrates, differs by three orders of magnitude fromthat of the wild-type enzyme.  相似文献   

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