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1.
蓖麻蚕不同组织脂酶同工酶的研究   总被引:5,自引:0,他引:5  
本工作为蚕类同工酶研究中的一部分,研究了蓖麻蚕五龄幼虫不同组织器官酯酶的分布情况,试图逐渐建立酶谱化。目的在于利用聚丙烯酰胺凝胶电泳,检验家蚕的DNA对蓖麻蚕的诱变作用(陈元霖等,1981),以期供体、受体与转化体之间几种酶谱的异同,从分子生物学的角度对蚕类DNA诱导遗传性变异加以阐述。  相似文献   
2.
Isotope effects for hydroxylation reactions catalyzed by cytochrome P-450 have usually been measured by comparing the overall reaction velocities of deuterated and nondeuterated substrates. Since the rate-limiting step is probably not the single reaction involving covalent bond cleavage, such an approach does not yield information about the primary isotope effect. We measured the primary kinetic isotope effect for benzylic hydroxylation by a method utilizing intramolecular competition, using the symmetrical substrate 1,3-diphenylpropane-1,1-d2. These experiments yield a value of kHkD = 11, a larger effect than has previously been reported for benzylic hydroxylations.  相似文献   
3.
The pH dependence of proton uptake upon binding of NADH to porcine heart mitochondrial malate dehydrogenase (l-malate: NAD+ oxidoreductase, EC 1.1.1.37) has been investigated. The enzyme has been shown to exhibit a pH-dependent uptake of protons upon binding NADH at pH values from 6.0 to 8.5. Enzyme in which one histidine residue has been modified per subunit by the reagent iodoacetamide (E. M. Gregory, M. S. Rohrbach, and J. H. Harrison, 1971, Biochim. Biophys. Acta253, 489–497) was used to establish that this specific histidine residue was responsible for the uptake of a proton upon binding of NADH to the native enzyme. It has also been established that while there is no enhancement of the nucleotide fluorescence upon addition of NADH to the iodoacetamide-modified enzyme, NADH is nevertheless binding to the modified enzyme with the same stoichiometry as with native enzyme. The data are discussed in relation to the involvement of the essential histidine residue in the catalytic mechanism of “histidine dehydrogenases” recently proposed by Lodola et al. (A. Lodola, D. M. Parker, R. Jeck, and J. J. Holbrook, 1978, Biochem. J.173, 597–605) and the catalytic mechanism of “malate dehydrogenases” recently proposed by L. H. Bernstein and J. Everse (1978, J. Biol. Chem.253, 8702–8707).  相似文献   
4.
The biological activity of 1α,24R,25-trihydroxyvitamin D3 [1α,24R,25(OH)3D3] was elevated in comparison to the hormonally active form of vitamin D3, 1α,25-dihydroxyvitamin D3 [1α,25(OH)2D3], in the rachitic chick in terms of its ability to (a) stimulate intestinal calcium absorption, (b) mobilize bone calcium, (c) induce intestinal calcium binding protein, (d) modulate the level of enzyme activity of the renal 25-OH-D3-1-hydroxylase system, and (e) interact with the intestinal cystosol-chromatin receptor system for the 1α,25(OH)2D3 receptor system. In each of these assays, the relative ratio of activity of 1α,24R,25(OH)3D3 to 1α,25(OH)2D3was (a) 25–50, (b) ca. 20, (c) 10, (d) 50, and (e) 36%, respectively.  相似文献   
5.
The tissue distribution of the defective PAPS synthetic pathway in homozygous brachymorphic mice (bmbm) has been investigated using four different criteria: (i) incorporation of 35SO42? into adenosine 5′-phosphosulfate (APS), 3′-phosphoadenosine 5′-phosphosulfate (PAPS), and endogenous macromolecular acceptors, (ii) APS kinase (adenylylsulfate kinase; ATP:adenylylsulfate 3′-phosphotransferase, EC 2.7.1.25) activity, (iii) ATP sulfurylase (sulfate adenylyltransferase; ATP:sulfate adenylyltransferase, EC 2.7.7.4) activity, (iv) thermostability of ATP sulfurylase. With respect to the first three criteria, the results indicate that liver is affected as profoundly as cartilage (K. Sugahara and N. B. Schwartz, Arch. Biochem. Biophys. (1982) 214, 589–601). In contrast, skin and brain show no differences between normal and mutant. Kidney is significantly, but only moderately, affected. The results from thermostability studies demonstrate that ATP sulfurylase activity is more labile in bmbm cartilage, liver, and kidney, but not in skin or brain, supporting the above-observed distribution of the defect. Therefore, the present results indicate a multiple, but not universal, tissue distribution of the defective PAPS synthetic pathway in bmbm mice. Furthermore, these findings support the suggestion that ATP sulfurylase as well as APS kinase is defective in brachymorphic mice.  相似文献   
6.
The potentiometric acid-base titration curve of fully protonated lysozyme at ionic strengths of 0.10 and 1.0 m has been performed. The stoichiometry and the pKa values of each titratable group have been determined through the linearization of titration curves. Two types of carboxylic groups with pKa values of 3.76 and 5.02, the imidazole group with pKa 7.37 and the amine group with pKa 9.63, have been identified at an ionic strength of 0.10 m at 25.0°C. The number of titratable groups found per mole of protein has been 5.12 and 5.60 for the two types of carboxylic groups, 1.13 for the imidazole group, and 3.19 for the amino groups. The endpoint of the titration of the protein obtained by this method accords quite well with the endpoint obtained by the use of Gran function applied to the excess of strong base.  相似文献   
7.
A procedure is described that enables use of the p-phenylphenol color reaction to determine acetaldehyde in the presence of formaldehyde. The sample is first treated with an acidic 2,4-pentanedione reagent, which selectively removes formaldehyde. The method is applicable to blochemical reactions using tissue preparations.  相似文献   
8.
The activity of rat liver supernatant aldehyde dehydrogenase is increased by phenobarbital treatment in one selected strain (RR) but not in another strain (rr) of animals derived from randomally bred populations (Deitrich, Collins, and Erwin (1972) J. Biol. Chem., 247, 7232). Before 14 days of age, increased enzyme activity after phenobarbital treatment is minimal but between 30 and 60 days of age there is a maximal increase in activity after phenobarbital treatment. Using animals of this age, it was shown that both cycloheximide and actinomycin D block this response to phenobarbital. Phenobarbital treatment decreases heat stability of crude preparations of the enzyme from RR rats, but increases heat stability of the enzyme from rr animals.  相似文献   
9.
目的为进一步研究环境中病原微生物目标供体菌强力霉素抗性基因(Dox)水平传播机制奠定基础。方法以强力霉素抗性基因为筛选指标,通过药敏试验从7个菌株中筛选出遗传型分别为Dox~RX~S的候选供体菌和Dox~SX~R的候选受体菌(X代表不是强力霉素的抗生素),将供、受体菌共培养后筛选出遗传型为Dox~RX~R的接合子。分别测定X对目标供体菌、Dox对目标受体菌的最小抑菌浓度。对目标供、受体菌从形态学、生理生化、分子生物学和BIOLOG方面进行鉴定。结果研究的7个病原菌均为多重耐药,最多能耐受15种抗生素,对链霉素、萘啶酮酸和磺胺二甲嘧啶的耐药率最高(100%),对庆大霉素、诺氟沙星和环丙沙星的耐药率最低(0%)。目标供体菌、受体菌和接合子Con-Ⅱ基因型分别为Dox~RKan~S、Dox~SKan~R和Dox~RKan~R。Kan对目标供体菌的最小抑菌浓度为0.310 0μg/mL,Dox对目标受体菌的最小抑菌浓度为0.048 8μg/mL。目标供体菌(Dox~RKan~S)鉴定为Escherichia coli O157:H7(E.coli O157:H7),目标受体菌TR-M30-1(Dox~SKan~R)鉴定为产酸克雷伯菌。结论目标供体菌为E.coli O157:H7(Dox~RKan~S),目标受体菌为TR-M30-1(Dox~SKan~R),接合子为Con-Ⅱ(Dox~RKan~R)。  相似文献   
10.
Riboflavin-overproducing mutants of the flavinogenic yeast Candida famata are used for industrial riboflavin production. This paper describes the development of an efficient transformation system for this species. Leucine-deficient mutants have been isolated from C. famata VKM Y-9 wild-type strain. Among them leu2 mutants were identified by transformation to leucine prototrophy with plasmids YEp13 and PRpL2 carrying the Saccharomyces cerevisiae LEU2 gene. DNA fragments (called CfARSs) conferring increased transformation frequencies and extrachromosomal replication were isolated from a C. famata gene library constructed on the integrative vector containing the S. cerevisiae LEU2 gene as a selective marker. The smallest cloned fragment (CfARS16) has been sequenced. This one had high adenine plus thymine (A+T) base pair content and a sequence homologous to the S. cerevisiae ARS Consensus Sequence. Methods for spheroplast transformation and electrotransformation of the yeast C. famata were optimized. They conferred high transformation frequencies (up to 10(5) transformants per microg DNA) with a C. famata leu2 mutant using replicative plasmids containing the S. cerevisiae LEU2 gene as a selective marker. Riboflavin-deficient mutants were isolated from the C. famata leu2 strain and their biochemical identification was carried out. Using the developed transformation system, several C. famata genomic fragments complementing mutations of structural genes for riboflavin biosynthesis (coding for GTP cyclohydrolase, reductase, dihydroxybutanone phosphate synthase and riboflavin synthase, respectively) have been cloned.  相似文献   
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