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The crystal state binding of sodium ditbionite to deoxyhemoglobinis reported. Dithionite has been used extensively to deoxygenatehemoglobin and myoglobin and there has been considerable interestamong users of dithionite about its effect on protein structureand binding site(s). We have determined that dithionite bindsto deoxygenated hemoglobin crystals at the interface of twomolecules in the crystal lattice. Specific residues involvedin hydrogen bonds or salt interactions with dithionite includeHisll6 and Hisll7 of the ft subunit and Lysl6 of the ß2subunit of the adjacent hemoglobin molecule. No binding wasobserved at the symmetry related Hisll6 and 117 ß1 residues.We have shown that dithionite does not affect the native hemoglobinstructure or the binding of several allosteric inhibitors tohemoglobin and can be used to mount T state crystals in theair  相似文献   
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Pleurotus ostreatus (oyster mushroom) was cultivated in a peat moss based substrate. Acid-hydrolysed peat and non-hydrolysed peat were used in the preparation of the spawn and in the further stage of growing the mushroom fruiting bodies. For comparison, P. ostreatus was also cultivated on paper. Three harvests of mushrooms were obtained in 45 days. The highest total yield gave 10% conversion of peat substrate into mushroom biomass. The mushrooms had 36% crude protein content and all the essential amino acids were present.  相似文献   
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A study was conducted to investigate (1) physicochemical factors that influence polymer elution from GCLs containing a blend of bentonite and linear (water-soluble) polymer (LPB GCLs) and (2) the mechanism that controls the chemical compatibility of LPB GCLs when polymer elutes. A series of hydraulic conductivity (k), free swell and viscosity tests were performed on a commercial LPB GCL using DI water, varying concentrations of NaCl and CaCl?. Comparable tests were also performed on a conventional bentonite (CB) GCL containing the same untreated bentonite and the same physical properties as the LPB GCL. The LPB GCL showed improved swelling and hydraulic performance compared to the CB GCL when permeated with salt solutions. Total organic carbon analysis of the effluents showed that polymer eluted from the LPB GCL regardless of the permeant solution. However, the rate at which polymer eluted increased as the concentration and valence of the dominant cation increased. The rate at which polymer eluted also increased with hydraulic gradient. The mass of polymer retained inside the GCL matrix did not correlate with the k of the LPB GCL. Free swell tests coupled with chemical analysis suggest that, the improved chemical compatibility of the LPB GCL was due to the ability of the polymer to scavenge cations from the solution which allows the bentonite to undergo adequate swelling during the initial hydration period. Analogous to water-prehydrated CB GCLs, the dispersed structure of the bentonite fabric and increased adsorbed water molecules attained during initial swelling controls the k of the LPB GCL when polymer elutes.  相似文献   
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