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1.
A halotolerant alkaline serine protease from Penicillium citrinum YL-1 which was isolated from traditional Chinese fish sauce was purified by ammonium sulfate precipitation, dialysis, and DEAE 52-Cellulose column, thereby resulting in a 4.66-fold increase in specific activity (110.68 U/mg). The molecular weight (MW) was estimated to be 32.27 kDa using SDS-PAGE analysis. The protease exhibited optimal activity toward the substrate casein at pH 8.0 at 40°C and was stable at pH 6.0–8.0 and 4–30°C. Activity was inhibited by NaCl and retained at 28.3, 21.4 and 18.1% of the initial activity after incubation for 6 h at 20, 25 and 30% NaCl concentrations, respectively. The enzyme was stimulated by Mn2+ and inhibited by K+, Ca2+, Zn2+, Mg2+, Fe2+, and Fe3+. Km and Vmax of the protease for casein were 1.93 mg/ml and 56.81 μg/(min·ml), respectively. Protease activity was strongly inhibited by phenylmethyl sulfonylfluoride (PMSF), which confirmed the serine protease nature of the enzyme. The protease can hydrolyze tilapia protein in the absence or presence of NaCl (5–30%), thus suggesting that this protease is more halotolerant than the protease from other bacteria with high salinity resistance based on the current literature. These properties make the halotolerant alkaline serine protease a suitable candidate enzyme for fish protein hydrolysis during fish sauce fermentation.  相似文献   

2.
An extracellular α‐l ‐rhamnosidase from Penicillium citrinum MTCC‐3565 has purified to homogeneity from its culture filtrate using ethanol precipitation and cation‐exchange chromatography on carboxymethyl cellulose. The purified enzyme gave a single protein band corresponding to molecular mass of 45.0 kDa in SDS‐PAGE analysis showing the purity of the enzyme preparation. The native PAGE analysis showed the monomeric nature of the purified enzyme. Using p‐nitrophenyl α‐l ‐rhamnopyranoside as substrate, Km and Vmax values of the enzyme were 0.30 mm and 27.0 μm min mg?1, respectively. The kcat value was 20.1 s giving kcat/Km value of 67.0 mm s?1 for the same substrate. The pH and temperature optima of the enzyme were 8.5 and 50 °C, respectively. The activation energy for the thermal denaturation of the enzyme was 29.9 KJ mol?1. The α‐l ‐rhamnosidase was able to hydrolyse naringin, rutin and hesperidin and liberated l ‐rhamnose, indicating that the purified enzyme can be used for the preparation of α‐l ‐rhamnose and pharmaceutically important compounds by derhamnosylation of natural glycosides containing terminal α‐l ‐rhamnose. The α‐l ‐rhamnosidase was active at the level of ethanol concentration present in wine, indicating that it can be used for improving wine aroma.  相似文献   

3.
BACKGROUND: Proteases have become an essential part of the modern food and feed industry, being incorporated in a large and diversified range of products for human and animal consumption. The objective of this study was to purify and characterise a protease from wheat germ. RESULTS: After purification a single protease of molecular weight 61–63 kDa (determined by sodium dodecyl sulfate polyacrylamide gel electrophoresis) was obtained. The purified protease had optimal activity at 50 °C and maintained its activity completely after incubation at 30 °C for 30 min, while over 47% of the activity was lost after incubation at 80 °C for 30 min. The purified protease had optimal activity and maintained maximum stability at pH 5.5, while the activity decreased after incubation for 30 min at other pH values. The protease was inhibited by Mg2+, Mn2+, Ba2+ and iodacetic acid and stimulated by Li+, Ca2+, Cu2+, β‐mercaptoethanol and dithiothreitol, while Zn2+, L ‐cysteine and glutathione had no significant effect on its activity. At pH 5.5 the enzyme had a Km of 0.562 mg mL?1 with casein as substrate and showed higher affinity to casein than to bovine serum albumin, ovalbumin and gelatin. CONCLUSION: The purified enzyme from wheat germ was identified as a cysteine protease. Copyright © 2011 Society of Chemical Industry  相似文献   

4.
An α‐l ‐rhamnosidase secreted by Penicillium citrinum MTCC‐8897 has been purified to homogeneity from the culture filtrate of the fungal strain using ammonium sulphate precipitation and cation‐exchange chromatography on carboxymethyl cellulose. The sodium dodecyl sulphate/polyacrylamide gel electrophoresis analysis of the purified enzyme gave a single protein band corresponding to the molecular mass 51.0 kDa. The native polyacrylamide gel electrophoresis also gave a single protein band confirming the enzyme purity. The Km and Vmax values of the enzyme for p‐nitrophenyl α‐l ‐rhamnopyranoside were 0.36 mm and 22.54 μmole min?1 mg?1, respectively, and kcat value was 17.1 s?1 giving kcat/Km value of 4.75 × 104 m ?1 s?1. The pH and temperature optima of the enzyme were 7.0 and 60 °C, respectively. The purified enzyme liberated l ‐rhamnose from naringin, rutin, hesperidin and wine, indicating that it has biotechnological application potential for the preparation of l ‐rhamnose and other pharmaceutically important compounds from natural glycosides containing terminal α‐l ‐rhamnose and also in the enhancement of wine aroma.  相似文献   

5.
A trypsin was purified from pyloric caeca of pirarucu (Arapaima gigas). The effect of metal ions and protease inhibitors on its activity and its physicochemical and kinetic properties, as well its N-terminal sequence, were determined. A single band (28.0 kDa) was observed by SDS–PAGE. Optimum pH and temperature were 9.0 and 65 °C, respectively. The enzyme was stable after incubation for 30 min in a wide pH range (6.0–11.5) and at 55 °C. The kinetic parameters Km, kcat and kcat/Km were 0.47 ± 0.042 mM, 1.33 s−1 and 2.82 s−1 mM−1, respectively, using BApNA as substrate. This activity was shown to be very sensitive to some metal ions, such as Fe2+, Hg2+, Zn2+, Al3+, Pb2+, and was highly inhibited by trypsin inhibitors. The trypsin N-terminal sequence IVGGYECPRNSVPYQ was found. The features of this alkaline peptidase suggest that it may have potential for industrial applications (e.g. food and detergent industries).  相似文献   

6.
The extracellular α‐l ‐rhamnosidase has been purified by growing a new fungal strain Aspergillus awamori MTCC‐2879 in the liquid culture growth medium containing orange peel. The purification procedure involved ultrafiltration using PM‐10 membrane and anion‐exchange chromatography on diethyl amino ethyl cellulose. The purified enzyme gave single protein band in SDS‐PAGE analysis corresponding to molecular mass 75.0 kDa. The native PAGE analysis of the purified enzyme also gave a single protein band, confirming the purity of the enzyme. The Km and Vmax values of the enzyme for p‐nitrophenyl‐α‐l ‐rhamnopyranoside were 0.62 mm and 27.06 μmole min?1 mg?1, respectively, yielding kcat and kcat/km values 39.90 s?1 and 54.70 mm ?1 s?1, respectively. The enzyme had an optimum pH of 7.0 and optimum temperature of 60 °C. The activation energy for the thermal denaturation of the enzyme was 35.65 kJ?1 mol?1 K?1. The purified enzyme can be used for specifically cleaving terminal α‐l ‐rhamnose from the natural glycosides, thereby contributing to the preparation of pharmaceutically important compounds like prunin and l ‐rhamnose.  相似文献   

7.
Collagen is frequently digested using pepsin in industries to produce a triple helical collagen without the N‐ and C‐terminal telopeptides. However, kinetic analysis of this reaction is difficult because several Lys residues in the N‐ and in the C‐terminal telopeptides form covalent bonds, leading to multiple substrates species, and pepsin cleaves collagen at various sites in the N‐terminal and in the C‐terminal telopeptides, yielding different products. Here we performed kinetic analysis of the digestion of bovine type I collagen with porcine pepsin. The reaction could be monitored by SDS‐PAGE by measuring the intensity of the protein bands corresponding to the variant β11 chain. We obtained kinetic parameters relative to the decrease in the variant β11 chain upon digestion. At pH 4.0, the Km and kcat values increased with increasing temperature (30 to 65 °C), although the kcat/Km values were stable. Additional cleavage at the helical region was detected at 45 to 65 °C. At 37 °C, the Km and kcat values increased with decreasing pH, and the kcat/Km values at pH 2.1 to 4.5 were stable and higher than those at pH 5.0 and 5.5. No additional cleavage was detected at the examined pH. Thus, the optimal pH and temperatures for selective digestion of collagen telopeptides with pepsin are 2.1 to 4.5 and 30 to 40 °C, respectively. These results suggest that the method might be useful for the kinetic analysis of the digestion of collagen telopeptides with pepsin.  相似文献   

8.
Diospyros lotus fruit polyphenol oxidase was purified using affinity chromatography, resulting in a 15-fold enrichment in specific activity. The purified enzyme, having 16.5 kDa molecular weight on sodium dodecyl sulfate-polyacrylamide gel electrophoresis, exhibited the highest activity toward 4-methylcatechol. Maximum diphenolase activity was reached at pH 7.0 and 60°C in the presence of 4-methylcatechol. Km and Vmax values were calculated as 3.8 mM and 1250 U/mg protein, respectively. Ascorbic acid was a promising inhibitor with an IC50 value of 0.121 µM. The activity of the purified enzyme was stimulated by Fe2+, Sr2+, Zn2+, and K+ and deeply inhibited by Hg2+, at 1 mM final concentration. Aqueous extract of Diospyros lotus L. fruit showed strong substantial urease and acetylcholinesterase inhibition, with IC50 values of 1.55 ± 0.05 and 16.75 ± 0.11 mg/mL, respectively.  相似文献   

9.
A protease from sorghum malt variety KSV8–11 was purified by a combination of dialysis against 4 M sucrose, ion‐exchange chromatography on Q‐Sepharose (Fast flow), gel filtration chromatography on Sephadex G‐100 and hydrophobic interaction chromatography on Phenyl Sepharose CL‐4B. The enzyme was purified 5‐fold to give a 14.1% yield relative to the total activity in the crude extract and a final specific activity of 1348.9 U mg?1 protein. SDS‐PAGE revealed a single migrating protein band corresponding to a relative molecular mass of 16 KDa. Using casein as substrate, the purified protease had optimal activity at 50°C and maximal temperature stability between 30°C and 40°C but retained over 64% of its original activity after incubation at 60°C for 30 min. The pH optimum was 5.0 with maximum stability at pH 6.0 but 60% of the activity remained after 24 h between pH 5.0 and 8.0. The protease was inhibited by Ag+, Ca2+, Co2+, Fe2+, Mg2+, iodoacetic acid (IAA) and p‐chloromercuribenzoate (p‐CMB), stimulated by Cu2+, Sr2+, phenylmethylsulfonyl‐fluoride (PMSF) and 2‐mercaptoethanol (2‐ME) while Mn2+ and ethylenediaminetetraacetic acid (EDTA) had no effect. The purified enzyme had a Km of 18 mg·mL?1 and a Vmax of 11.1 μmol · mL?1 · min?1 with casein as substrate.  相似文献   

10.
BACKGROUND: Pectin methylesterase (PME) catalyses the hydrolysis of the methyl ester of pectin, yielding free carboxyl groups and methanol. PME is widely used in the food, cosmetic and pharmaceutical industries. RESULTS: PME from Aspergillus niger was constitutively expressed to a high level in the yeast Pichia pastoris. The recombinant PME was purified by a combination of ammonium sulfate fractionation and ion exchange chromatography, giving an overall yield of 28.0%. It appeared as a single band in sodium dodecyl sulfate polyacrylamide gel electrophoresis, with a molecular mass of about 45 kDa. Optimal activity of the enzyme occurred at a temperature of 50 °C and a pH of 4.7. The Km, Vmax and kcat values of the enzyme with respect to pectin were 8.6 mmol L?1 [ ], 1.376 mmol min?1 mg?1 and 8.26 × 102 s?1 respectively. Cations such as K+, Mg2+, Ni2+, Mn2+ and Co2+ slightly inhibited its activity, whereas Na+ had no effect. CONCLUSION: PME from A. niger was constitutively expressed to a high level in P. pastoris without methanol induction. The recombinant PME was purified and characterised and shown to be a good candidate for potential application in the fruit juice industry. Copyright © 2012 Society of Chemical Industry  相似文献   

11.
L-Arabinose isomerase (AI; E.C. 5.3.1.4), a commercial enzyme for the production of edible tagatose in vitro and ribulose production in vivo, has been studied using enzymes expressed in an Escherichia coli system, which might cause noxious by-products in food. To ensure food safety in the tagatose manufacturing process, we studied an AI expression system in Bacillus subtilis. The AI gene from Geobacillus stearothermophilus (GSAI) was expressed in Bacillus subtilis, a GRAS host used in the production of fermented soybean in Korea, after subcloning into a Bacillus subtilis - E. coli shuttle vector, and was characterized after purification. The activities of the crude enzyme extract and a purified sample were 0.15 U/mg protein and 2.7 U/mg protein, respectively. The optimal pH and the optimal temperature for arabinose and galactose as substrates were pH 8.0 and 60°C, respectively, the same as those for GSAI in an E. coli expression system. Substrate affinities (Km) for arabinose and galactose were 77 mM and 279 mM, respectively, whereas in the E. coli expression system, they were 100 mM and 578 mM, respectively. Catalytic efficiencies (kcat/Km) for arabinose and galactose were 58.3 and 11.4 mM?1 min?1, respectively. The potential use of GSAI expressed in a GRAS host for the production of edible tagatose is discussed in light of these results.  相似文献   

12.
BACKGROUND: In Tunisia, sardinelle (Sardinella aurita) catches totalled about 13 300 t in 2002. During processing, solid wastes including heads and viscera are generated, representing about 30% of the original raw material. Viscera, one of the most important by‐products of the fishing industry, are recognised as a potential source of digestive enzymes, especially proteases with high activity over a wide range of pH and temperature conditions. This paper describes the purification procedure and some biochemical characterisation of trypsin from S. aurita viscera. RESULTS: Trypsin from the viscera of sardinelle (S. aurita) was purified by fractionation with ammonium sulphate, Sephadex G‐75 gel filtration, Sepharose mono Q anion exchange chromatography, ultrafiltration and a second Sephadex G‐75 gel filtration, resulting in a 5.42‐fold increase in specific activity and 6.1% recovery. The molecular weight of the purified enzyme was estimated to be 24 kDa using size exclusion chromatography and sodium dodecyl sulfate polyacrylamide gel electrophoresis. The purified enzyme showed esterase‐specific activity on N‐α‐benzoyl‐L ‐arginine ethyl ester (BAEE) that was four times greater than its amidase‐specific activity on N‐α‐benzoyl‐DL ‐arginine‐p‐nitroanilide (BAPNA). The optimal pH and temperature for enzyme activity were pH 8 and 55 °C respectively using BAEE as a substrate. The trypsin kinetic constants Km and kcat on BAPNA were 1.67 mmol L?1 and 3.87 s?1 respectively, while the catalytic efficiency kcat/Km was 2.31 s?1 L mmol?1. CONCLUSION: Trypsin was purified from sardinelle (S. aurita) viscera. Biochemical characterisation of S. aurita trypsin showed that this enzyme can be used as a possible biotechnological tool in the fish‐processing and food industries. Copyright © 2008 Society of Chemical Industry  相似文献   

13.
A medium was developed to obtain the maximum yield of raw starch‐digesting amylase from Aspergillus carbonarius (Bainier) Thom IMI 366159 in submerged culture with raw starch as the sole carbon source. The amylase was purified to apparent homogeneity by sucrose concentration and ion exchange chromatography on S‐ and Q‐Sepharose (fast flow) columns. SDS‐PAGE revealed two migrating protein bands corresponding to relative molecular masses of 31.6 and 32 KDa. The enzyme was optimally active at pH 6.0–7.0 and 40 °C, was uninfluenced across a relatively broad pH range of 3.0–9.0 and retained over 85% activity between 30 and 80 °C after 20 min incubation. The enzyme was strongly activated by Co2+ and only slightly by Fe2+, while Ca2+, Hg2+, EDTA and N‐bromosuccinamide elicited significant repression of the enzyme activity. The enzyme hydrolysed amylopectin (Km 0.194 mg ml −1), glycogen (Km 0.215 mg ml −1), pullulan (Km 0.238 mg ml −1), amylose (Km 0.256 mg ml −1) and raw potato starch (Km 0.260 mg ml −1), forming predominantly maltose and relatively smaller amounts of glucose. © 2000 Society of Chemical Industry  相似文献   

14.
The polyphenol oxidase (PPO) enzyme was purified and characterized from Hem?in Apple (Malus communis L.), which was organically grown in Hem?in, in the Rize province of Turkey. Enzyme (PPO) activation was determined with catechol substrate. Apples were homogenized with homogenate buffer (pH 8.5). This process was followed by precipitation with (20–80%) saturated solid (NH4)2SO4 and dialysis. Finally, purification with DE52-Cellulose ion-exchange and Sephadex G-25 columns was performed. Experiments were performed at an optimum pH (5.5) and optimum temperature (30–40°C). The kinetic and thermal parameters Km (3.40 mM), Vmax (333.3 EU/mL.min), Ea (3.57 kcal), ?H (2.968 kcal/mol), Q10 (1.33), kcat (24.57 min?1) and V0 (7.2x103 mM?1.min?1) were assessed. Additionally, the effects of Mg2+, Pb 2+, Fe2+, Fe3+, Cd2+, Cu2+, Zn2+, Co2+, Al3+, Mn2+ and Na+ on enzyme activity was recorded, and the IC50 values, K? values and inhibition types were determined.  相似文献   

15.
Thermostable enzymes are currently being investigated to improve industrial processes of starch saccharification. A novel glucoamylase was purified to electrophoretic homogeneity from the culture supernatant of Fusarium solani on a fast protein liquid chromatographic system (FPLC). The recovery of glucoamylase after gel filtration on FPLC was 31.8% with 26.2-fold increase in specific activity. The enzyme had a molecular mass of 40 kDa by SDS-PAGE and 41 kDa by gel filtration. The glucoamylase exhibited optimum activity at pH 4.5. The Kcat and Km were 441/min and 1.9 mg/ml, respectively, for soluble starch, specificity constant (Kcat/Km) was 232. The enzyme was thermally stable at 50 °C and retained 79% activity after 60 min at this temperature. The half-life of the enzyme was 26 min at 60°C. The enzyme was slightly stimulated by Cu2+ and Mg2+ and strongly inhibited by Hg2+, Pb2+, Zn2+, Ni2+ and Fe3+.  相似文献   

16.
A phytate-degrading enzyme (myo-inositol hexakisphosphate phosphohydrolase) has been purified about 5,400-fold from germinated oat seedlings to apparent homogeneity. The molecular mass of the native monomeric enzyme was estimated to be about 67 kDa. Optimal pH for degradation of phytate was 5.0 and the optimal temperature 38 °C. Kinetic parameters for the hydrolysis of Na-phytate are KM 30 µM and kcat 356 s−1 at 35 °C and pH 5.0. The oat phytase exhibits a broad affinity for various phosphorylated compounds and hydrolyses phytate in a stepwise manner. The first hydrolysis product was identified as D /L -l(1,2,3,4,5) P5. © 1999 Society of Chemical Industry  相似文献   

17.
A carboxypeptidase was purified and crystallised from wheat bran. Disc gel electrophoresis at pH 4·0 and ultracentrifugal analysis revealed that the enzyme was essentially homogeneous. The sedimentation constant and isoelectric point were determined to be 6·3 S and 6·0, respectively. The molecular weight of the enzyme was estimated to be 118,000 by a gel filtration method. The enzyme liberated carboxyl terminal amino acid residues from a wide range of N-substituted dipeptides and tripeptides which contain l-proline. It had a pH optimum at pH 4·0 for Z-Glu-Tyr (Z-benzyloxycarbonyl). The Km and kcat values for Z-Glu-Tyr at pH 4·0 and 30°C were 0·19 mm and 20 s?1, respectively. The enzyme hydrolysed Z-Gly-Pro-Leu-Gly-Pro and bradykinin sequentially at pH 4·0 from their carboxyl terminal amino acid residues. The enzyme activity was completely inhibited by DFP.  相似文献   

18.
Polyphenol oxidase (EC 1.10.3.1) in head lettuce (Lactuca sativa L) was purified by ammonium sulphate fractionation, ion exchange chromatography and gel filtration. The enzyme was found to be homogeneous by polyacrylamide gel electrophoresis. The molecular weight of the enzyme was estimated to be about 56 000 amu by Sephadex G-100 gel filtration. The purified enzyme quickly oxidised chlorogenic acid (5-caffeoyl quinic acid) and (—)-epicatechin. The Km values for the enzyme, using chlorogenic acid (pH 4·5, 30°C) and (—)-epicatechin (pH 7·0, 30°C) as substrate, were 0·67 mM and 0·91 mM, respectively. The optimal pH of chlorogenic acid oxidase and (—)-epicatechin oxidase activities were 4·5 and 7·8, respectively, and both activities were stable in the pH range 6–8 at 5°C for 20 h. Potassium cyanide and sodium diethyldithiocarbamate markedly inhibited both activities of the purified enzyme. The inhibitory effect of metallic ions such as Ca2+, Mn2+, Co2+ and Ni2+ for chlorogenic acid oxidase activity was stronger than that for (—)-epicatechin oxidase activity.  相似文献   

19.
β‐Mannanase was purified 2619.05‐fold from the Lactobacillus plantarum (M24) bacterium by ammonium sulphate precipitation and ion exchange chromatography (DEAE‐Sephadex). The purified enzyme gave two protein bands at a level of approximately 36.4 and 55.3 kDa in the SDS‐PAGE. The purified mannanase enzyme has shown its maximum activity at 50 °C and pH 8, and it has been also determined that the enzyme was stable at 5–11 pH range and over 50 °C. The Vmax and Km values have been identified as 82 mg mannan mL?1 and 0.178 mm , respectively. The effects of some metal ions such as Fe2+, Ca2+, Co2+, Ni2+, Mn2+, Cu2+ and Zn2+ on the mannanase enzyme have been also investigated, and it has been determined that all metal ions had significant effects on the activation of the mannanase enzyme. In addition, the effectiveness of the purified mannanase enzyme on the clarification of some fruit juices such as orange, apricot, grape and apple has been investigated. During the clarification processes, the enzyme was more effective than crude extracts on the clarification of the peach juice with a ratio of 223.1% at most.  相似文献   

20.
A new β-galactosidase (β-gal) was purified from a lactic acid bacterial strain of Enterococcus faecium MTCC5153 by chromatographic techniques. The purified enzyme had a specific activity of 24.06 U/mg of protein with k m and Vmax values of 2 mM and 18.2 mM/min/mg of protein, respectively. The yield of purified β-gal was 10.65% and estimated molecular weight found to be ~90 kDa, consisting of two homodimeric subunits of 43kDa. The enzyme was stable in pH range of 8.0–9.0 with an optimum pH of 8 and the optimum temperature of 40°C. The enzyme was activated in the presence of metal ions such as Mg+2, Mn+2, Ca+2, K+ and Na+ and was inhibited by Zn+2, Co+2 and Cu+2. Chemical modifiers (N-bromosuccinamide and Diethylpyro carbonate) inactivated the enzyme indicating the role of tryptophan and histidine moieties for activity. The purified β-gal was able to synthesize oligosaccharides from lactose. This study suggests that the β-gal of Enterococcus faecium MTCC5153 could be applied in dairy industry for hydrolysis of lactose and to improve its digestibility. β-gal of probiotic cultures are of particular interest due to their transgalactosylation properties.  相似文献   

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