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61.
碱性蛋白酶生产菌——地衣芽孢杆菌经丝裂霉素C或紫外线处理,均可诱导释放噬菌体,电镜观察表明噬菌体头部外廓呈六边形,有不收缩的尾部(头部40nm×40nm,尾部107×5,7nm),噬菌体BLL1 DNA对限制酶Eco R Ⅰ,HindⅢ和Bam H Ⅰ敏感,分别切割成8,15,和9个片段,经电泳法测定。噬菌体DNA分子量约相当于23.4kb,根据解链温度计算出噬菌体的G+C含量约为31.2摩尔%,噬菌体提纯的外壳蛋白经SDS-聚丙烯酰胺凝胶电泳呈现5条主带,其分子量分别约为78000,72000,55000,39000,35000。  相似文献   
62.
Cytochromec oxidase fromParacoccus denitrificans was homogenously dispersed in Triton X-100. Using gel exclusion chromatography and sucrose gradient centrifugation analysis a molecular weight of the detergent-protein complex of 155,000 was determined. After subtraction of the bound detergent (111 mol/mol hemeaa 3) a molecular weight of 85,000 resulted, which agreed well with the model of a monomer containing two subunits. This monomer showed high cytochromec oxidase activity when measured spectrophotometrically in the presence of Triton X-100 (V max=85 s–1). The molecular activity, plotted according to Eadie-Hofstee, was monophasic as a function of the cytochromec concentration. AK m of 3.6×10–6 M was evaluated, similar to theK m observed in the presence of dodecyl maltoside [Naeczet al. (1985).Biochim. Biophys. Acta 808, 259–272].  相似文献   
63.
湘江沿岸11个县土壤中能以666为唯一碳源的菌数平均36.2万个/克干土。种稻土壤淹水84天平均降解所加20微克/克干土666的98.4%,4个异构体也降解很快。灭菌土即便淹水84天,所加666也几乎不减少。种稻土壤不淹水84天只平均降解所加20微克/克干土666的43.5%,β-666只平均降解14.1%。但当种稻季节,此残留666又会迅速降解,表明本区种稻土壤对666的“自净”能力强。 不淹水土壤含水率对徽生物降解666有明显影响。使降解率从60%陡降的临界含水率为20%。这是因为含水量影响了微生物呼吸活性所致。 淹水土壤溶解氧对微生物降解666有明显影响。对于湘江流域种稻土壤来说,以淹水条件下含微量O_2,对降解666最为有利。该水分条件可通过农田管水措施来达到。  相似文献   
64.
A general method for the synthesis of azido-ubiquinone derivatives has been developed directly by substituting one hydrogen atom on the benzoquinone ring with an azido group under weakly acidic conditions. The reaction takes several hours and the yield is generally low. The azido-ubiquinone was purified by preparative thin layer chromatography, and identified by NMR, IR and mass spectra. All the synthesized azido-ubiquinone derivatives show partial activity in mediating biological electron transfer in the dark, and show partial or complete inhibition upon photolysis.  相似文献   
65.
N,N′-Dicyclohexylcarbodiimide (DCCD) inhibits the activity of ubiquinol-cytochrome c reductase in the isolated and reconstitued mitochondrial cytochrome b-c1 complex. DCCD inhibits equally electron flow and proton translocation (i.e., the H+e? ratio is not affected) catalysed by the enzyme reconstituted into phospholipid vesicles. The inhibitory effects are accompanied by structural alterations in the polypeptide pattern of both isolated and reconstituted enzyme. Cross-linking was observed between subunits V (iron-sulfur protein) and VII, indicating that these polypeptides are in close proximity. A clear correlation was found between the kinetics of inhibition of enzymic activity and the cross-linking, suggesting that the two phenomena may be coupled. Binding of [14C]DCCD was also observed, to all subunits with the isolated enzyme and preferentially to cytochrome b with the reconstituted vesicles; in both cases, however, it was not correlated kinetically with the inhibition of the enzymic activity.  相似文献   
66.
[3H] R05-4864 binding sites have been characterized in kidney, heart, brain, adrenals and platelets in the rat. In all these organs the following order of potency in the R05-4864 displacement was found : R05-4864 > diazepam > clonazepam indicating that they correspond to the “peripheral type” of benzodiazepine binding sites. PK 11195, an isoquinoline carboxamide derivative, displaces [3H] R05-4864 from its binding sites in all the organs. PK 11195 was as potent as R05-4864 in the platelets, heart, adrenals, kidney and several brain regions (midbrain, hypothalamus, medulla + pons and hippocampus. However it was 5 to 10 times more effective in cortex and striatum. In conclusion PK 11195 might represent a new tool to elucidate the physiological relevance of “peripheral type” benzodiazepine binding sites and might help to discriminate the hypothetical subclasses of these binding sites.  相似文献   
67.
The sequence of three tRNAs from Halobacterium cutirubrum have been determined. The sequences of tRNAValGAC and tRNAValCAC differ by only one nucleotide which is in the 5' terminal anticodon position. These tRNAs as well as that of tRNAAlaCGC are compared to other known halobacterial tRNAs. An observed paucity (or absence) of U in the first anticodon position is unique to archaebacterial tRNAs and may be indicative of unusual decoding properties of these organisms.  相似文献   
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