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1.
本实验对臭鼩的血清蛋白及心肌、骨骼肌、肾脏、脾脏、肝脏,睾丸6种组织器官的乳酸脱氢酶(LDH)同工酶进行了聚丙烯酰胺凝胶盘状电泳的分析研究。臭鼩血清蛋白存在15—17条带,各组织的LDH同工酶均由5条带构成,其中心肌LDH-1、LDH-2和肾脏LDH-1各出现1条亚带。  相似文献   

2.
A mutant Chinese hamster ovary cell deficient in lactate dehydrogenase A activity has been isolated using a nonselective technique. The method uses histochemical staining to examine colonies directly for enzyme activity and nylon cloth replica plating to recover particular clones. The mutant cell has an apparent Km (pyruvate to lactate) that is nearly tenfold higher than the parental cell, while its Vmax has been reduced more than 80-fold. In mutant cell extracts with added porcine LDH-B enzyme, molecular dissociation and recombination of subunits produces two new active LDH tetramers (A1B3, A2B2). The electrophoretic mobility of at least one of the tetramers (A1B3) was different from those formed in the parental extracts. The evidence suggests the variant cell contains a mutation in the structural gene for LDH-A.  相似文献   

3.
1. The subunit distribution and homologies of LDH isoenzymes are investigated in the species Triturus vulgaris, cristatus, alpestris and helveticus, and Ambystoma mexicanum by means of immunoprecipitation and starch gel electrophoresis. 2. Fresh tissue extracts contain the following patterns: (a) Trit. vulgaris--Two isoenzymes: the M4 and H4 tetramers. No hybrid formation is observed between H and M subunits. (b) Trit. cristatus--Two isoenzymes: the M4 and H4 tetramers. Occasional hybrid formation between H and M subunits takes place. (c) Trit. alpestris--Six isoenzymes: the M4, H4, H3H', H2H'2, HH'3 and H'4 tetramers. No hybrid formation between the M and the H and H' subunits is detected. (d) Trit. helveticus--Six isoenzymes: the M4, H4, H3H', H2H'2, HH'3, and H'4 tetramers; the H' subunit is more positively charged than the M subunit, which leads to pattern reversal in heart and skeletal muscle tissues. No hybrid formation between the M and the H and H' subunits is observed. (e) Ambyst. mex.--Eleven isoenzymes in heart, eye and brain, six isoenzymes in all other tissues tested. The presence of two M subunits, which form hybrids with the H subunit in a restricted way, is suggested. 3. In tissue extracts of the tested species the tendency of all present LDH subunits to form hybrids with each other without restriction is increased after prolonged storage at 2 degrees C. 4. The most acidic of the major isoenzymes (LDH1) in Trit. vulgaris, cristatus and helveticus tends to split into a series of sub-bands which migrate faster to the anode than the original main band.  相似文献   

4.
华南兔组织乳酸脱氢酶同工酶的研究   总被引:1,自引:1,他引:0  
本文以聚丙烯酰胺凝胶电泳法分析华南兔(Lepus sinensis sinensis)11种组织乳酸脱氢酶同工酶的分布待征。分析结果:骨骼肌和肝组织5条同工酶带俱全;脑、肺、卵巢和盲肠等组织各含有4条谱带(LDH-1,-2,-3和-4);胃和肾组织含有3条谱带(LDH-1,-2,和-3);眼晶状体和睾丸组织也含有3条谱带,但前者是LDH-3,-4和-5,后者是LDH-1,-2和-5;谱带最少的是心肌组织,只有2条(LDH-1和-2)。此外,还对各组织中的亚基活性分布及电泳图谱特征进行了分析。  相似文献   

5.
Summary Adult human testicular tissue contains up to six previously undescribed lactate dehydrogenase (LDH) isoenzymes in addition to the five LDH isoenzymes normally found and the sixth found in spermatogenic cells and spermatozoa, LDH-X. Additional LDH isoenzymes were also found in spermatozoa but not in seminal fluid or in serum. After electrophoresis one additional LDH isoenzyme of testicular tissue was localized between LDH-1 and LDH-2, two between LDH-2 and LDH-3, two between LDH-3 and LDH-4, and two between LDH-4 and LDH-5. These localizations indicate that the additional LDH isoenzymes are tetramers combining the A and B subunits of the five normal LDH isoenzymes and the C subunit of LDH-X. The additional LDH isoenzymes may be important in the metabolism of spermatogenic germ cells and spermatozoa.  相似文献   

6.
Lactate dehydrogenase isozymes are inhibited when mercurial reagents are bound to cysteine-165 although no functional role is ascribed to this residue. Identical tryptic peptides containing this cysteine have been isolated from many LDH isozymes, including both A and B subunits. This report identifies an identical peptide from a third subunit type, C, of mouse. The rigorous conservation of this sequence implies an important functional role for this region of the molecule.  相似文献   

7.
The metzincin metalloproteinase pregnancy-associated plasma protein A (PAPP-A, pappalysin-1) promotes cell growth by the cleavage of insulin-like growth factor-binding proteins-4 and -5, causing the release of bound insulin-like growth factors. The proteolytic activity of PAPP-A is inhibited by the proform of eosinophil major basic protein (pro-MBP), which forms a covalent 2:2 proteinase-inhibitor complex based on disulfide bonds. To understand the process of complex formation, we determined the status of cysteine residues in both of the uncomplexed molecules. A comparison of the disulfide structure of the reactants with the known disulfide structure of the PAPP-A.pro-MBP complex reveals that six cysteine residues of the pro-MBP subunit (Cys-51, Cys-89, Cys-104, Cys-107, Cys-128, and Cys-169) and two cysteine residues of the PAPP-A subunit (Cys-381 and Cys-652) change their status from the uncomplexed to the complexed states. Upon complex formation, three disulfide bonds of pro-MBP, which connect the acidic propiece with the basic, mature portion, are disrupted. In the PAPP-A.pro-MBP complex, two of these form the basis of both two interchain disulfide bonds between the PAPP-A and the pro-MBP subunits and two disulfide bonds responsible for pro-MBP dimerization, respectively. Based on the status of the reactants, we investigated the role of individual cysteine residues upon complex formation by mutagenesis of specific cysteine residues of both subunits. Our findings allow us to depict a hypothetical model of how the PAPPA.pro-MBP complex is formed. In addition, we have demonstrated that complex formation is greatly enhanced by the addition of micromolar concentrations of reductants. It is therefore possible that the activity in vivo of PAPP-A is controlled by the redox potential, and it is further tempting to speculate that such mechanism operates under pathological conditions of altered redox potential.  相似文献   

8.
The glutathione S-transferases (EC 2.5.1.18) have been purified to electrophoretic homogeneity from 105,000g supernatant of sheep liver homogenate by employing a combination of gel filtration on Sephadex G-150 and affinity chromatography on S-hexylglutathione-linked Sepharose-6B columns. Approximately 70% of the original glutathione S-transferase activity toward 1-chloro-2,4-dinitrobenzene and glutathione peroxidase activity toward cumene hydroperoxide could be recovered by this purification method. Of particular importance in developing this procedure was the fact that the enzyme preparation obtained after affinity column chromatography represented all the isozymes of sheep liver glutathione S-transferases. Further purification by CM-cellulose and DEAE-cellulose column chromatography resolved the glutathione S-transferases into seven distinct cationic isozymes designated C-1, C-2, C-3, C-4, C-5, C-6, and C-7 and five overlapping anionic transferases designated A-1, A-2, A-3, A-4, and A-5, respectively, in the order of their elution from the ion-exchange columns. The sodium dodecyl sulfate SDS-gel electrophoretic data on subunit composition revealed that cationic enzymes are composed of two subunits with an identical Mr of 24,000 whereas a predominant subunit with Mr of 26,000 was observed in all anionic isozyme peaks except A-1. Cationic isozymes accounted for approximately 98% of the total peroxidase activity associated with the glutathione S-transferase whereas only A-1 of the anionic isozymes displayed some peroxidase activity. Isozyme C-4 was found to be the most abundant glutathione S-transferase in the sheep liver. Characterization of the individual transferases by their specificity toward a number of selected substrates, subunit composition, and isoelectric points showed some similarities to those patterns for human liver glutathione S-transferases.  相似文献   

9.
Vacuolar H+-ATPase (V-ATPase) consists of a catalytic head, a stalk part and a membrane domain. We indirectly investigated the interaction between the A subunit (catalytic head) and the E subunit (stalk part) using an ATP analogue, adenosine 5'-[beta,gamma-imino]triphosphate (AMP-PNP), which holds the enzyme in the substrate-binding state. AMP-PNP treatment caused a mobility shift of the E subunit with a faster migration in SDS/polyacrylamide gel electrophoresis without a reductant, while ATP treatment did not. A mobility shift of the E subunit has been detected in several plants. As polypeptides with intramolecular disulfide bonds migrate faster than those without disulfide bonds, the mobility shift may be due to the formation of an intramolecular disulfide bond by two cysteine residues conserved among several plant species. The mobility shift may be involved in the binding of AMP-PNP to the ATP-binding site, which exists in the A and B subunits, as it was inhibited by the addition of ATP. Pretreatment with 2'-3'-O-(4-benzoylbenzoyl)-ATP (Bz-ATP), which modifies the ATP-binding site of the B subunit under UV illumination, did not inhibit the mobility shift of the E subunit caused by AMP-PNP treatment. The response of V-ATPase following the AMP-PNP binding may cause a conformational change in the E subunit into a form that is susceptible to oxidation of cysteine residues. This is the first demonstration of interaction between the A and E subunits in the substrate-binding state of a plant V-ATPase.  相似文献   

10.
Five types of subunits are postulated to explain the lactate dehydrogenase zymogram patterns of cod tissues. The subunits designated A, B, and C occur predominantly in white skeletal muscle, heart, and liver tissues, respectively. The D subunit is found almost exclusively in the retina. Activity of the E subunit is found in most tissues but does not appear to be predominant in any one tissue. The A subunits are most susceptible to heat treatment. The B subunits are the least reactive when AcPyAD, an NAD analogue, is used in place of NAD. Subbands may be produced in incubating heart or muscle extracts with pyloric caeca extract or with trypsin or chymotrypsin. Subbands normally appearing in tissues zymograms may represent partially synthesized or partially degraded active LDH tetramers normally present in a metabolizing tissue. In a sampling of three Canadian and one European cod populations, four forms of the heart subunit were found. They are designated B, B, B, and B. Allele frequencies of the heart types for each population sample are compared.  相似文献   

11.
Caspases are a family of cysteine proteases activated during apoptosis. Modification of caspases by nitric oxide and its relevance during apoptosis is currently a controversial subject. In this study we analyzed the S-nitrosated form of caspase-3 at a molecular level. By using electrospray ionization-mass spectrometry, we detected poly-S-nitrosation of caspase-3 with an average of about 2 molecules of NO bound per enzyme. Although NO treatment completely inhibited enzyme activity, S-nitrosation was not restricted to the active site cysteine. Rather, we detected multiple relative mass increases of 30 +/- 1 Da in both the p12 and p17 subunits of caspase-3, corresponding to single to triple S-nitrosation. The stability of these S-nitrosations differed in physiologically relevant concentrations of 5 mM glutathione. Whereas all S-nitroso bonds in the p12 subunit were cleaved with release of NO and partial formation of protein-mixed disulfides with glutathione, a single S-nitrosation in the p17 subunit remained stable. Since this S-nitrosation was not observed in a mutant form of caspase-3 lacking the active site cysteine, we conclude that NO nitrosates the active site cysteine of caspase-3 and that this modification is notably inert to fast trans-nitrosation with glutathione. Furthermore, we provide evidence that treatment of caspase-3 with NO can lead to mixed disulfide formation with glutathione, demonstrating the oxidative character of NO.  相似文献   

12.
13.
Erv2p is a small, dimeric FAD-dependent sulfhydryl oxidase that generates disulfide bonds in the lumen of the endoplasmic reticulum. Mutagenic and structural studies suggest that Erv2p uses an internal thiol-transfer relay between the FAD-proximal active site cysteine pair (Cys121-Cys124) and a second cysteine pair (Cys176-Cys178) located in a flexible, substrate-accessible C-terminal tail of the adjacent dimer subunit. Here, we demonstrate that Cys176 and Cys178 are the only amino acids in the tail region required for disulfide transfer and that their relative positioning within the tail peptide is important for activity. However, intragenic suppressor mutations could be isolated that bypass the requirement for Cys176 and Cys178. These mutants were found to disrupt Erv2p dimerization and to increase the activity of Erv2p for thiol substrates such as glutathione. We propose that the two Erv2p subunits act together to direct the disulfide transfer to specific substrates. One subunit provides the catalytic domain composed of the active site cysteine residues and the FAD cofactor, while the second subunit appears to have two functions: it facilitates disulfide transfer to substrates via the tail cysteine residues, while simultaneously shielding the active site cysteine residues from non-specific reactions.  相似文献   

14.
树鼩血清乳酸脱氢酶同工酶的研究   总被引:2,自引:1,他引:1  
采用0.5%琼脂糖凝胶电泳技术对70例云南树鼩(Tupaia belangeri chinensis)正常血清乳酸脱氢酶(LDH)同工酶进行电泳分析。结果表明,树鼩血清乳酸脱氢酶呈现5种不同分子形式的同工酶表型。其LDH4至LDH1同工酶随电泳迁移率的增大依次趋于阳极端,LDH5同工酶移向阴极端。采用分光光度定量法分别测得雌雄个体血清LDH1-LDH55种不同分子形式同工酶的相对百分含量分别为17.9,14.5,20.6,19.7,27.4,和19.6,15.2,18.3,17.7,29.5,雌雄个体H/M亚基比率分别为0.78和0.79。  相似文献   

15.
The adult bullfrog Rana catesbeiana has two major hemoglobin components, B and C. Component C polymerizes by disulfide bond formation between tetramers but component B does not. The amino acid sequence of the first 112 residues of the beta chain of component C has been reported (Baldwin, T. O., and Riggs, A. (1974) J. Biol. Chem. 249, 6110-6118). We have completed the sequence of the beta chain of component C by determining the last 28 residues. This segment contains the 2 cysteinyl residues of the chain. Examination of models indicates that neither of these is in a readily accessible position for the formation of intertetramer disulfide bonds. Reactive sulfhydryl groups of the alpha chains are shown to be responsible for the initial formation of disulfide bonds between tetramers. The beta chains within the tetramers form disulfide bonds only when the hemoglobin molecules are subjected to prolonged incubation at 37 degrees C under oxygen. The beta chains of components B and C appear to be identical; the alpha chains are clearly quite different. This suggests that the alpha B and alpha C subunits interact in the association of the deoxygenated tetramers B and C to form what appears to be a BC2 molecule.  相似文献   

16.
M. Satish Kumar 《FEBS letters》2009,583(1):175-1871
A number of αA-crystallin mutants are associated with hereditary cataract including cysteine substitution at arginine 49. We report the formation of affinity-driven disulfide bonds in the interaction of αA-R49C with βB1-crystallin. To mimic cysteine thiolation in the lens, βB1-crystallin was modified by a bimane probe through a disulfide linkage. Our data suggest a mechanism whereby a transient disulfide bond occurs between αA- and βB1-crystallin followed by a disulfide exchange with cysteine 49 of a neighboring αA-crystallin subunit. This is the first investigation of disulfide bonds in the confine of the chaperone/substrate complex where reaction rates are favored by orders of magnitude. Covalent protein cross-links are a hallmark of age-related cataract and may be a factor in its inherited form.  相似文献   

17.
CYO1 is required for thylakoid biogenesis in cotyledons of Arabidopsis thaliana. To elucidate the enzymatic characteristics of CYO1, we analyzed the protein disulfide isomerase (PDI) activity of CYO1 using dieosin glutathione disulfide (Di-E-GSSG) as a substrate. The reductase activity of CYO1 increased as a function of Di-E-GSSG, with an apparent K(m) of 824nM and K(cat) of 0.53min(-1). PDI catalyzes dithiol/disulfide interchange reactions, and the cysteine residues in PDI proteins are very important. To analyze the significance of the cysteine residues for the PDI activity of CYO1, we estimated the kinetic parameters of point-mutated CYO1 proteins. C117S, C124S, C135S, and C156S had higher values for K(m) than did wild-type CYO1. C158S had a similar K(m) but a higher K(cat), and C138S and C161S had similar K(m) values but lower K(cat) values than did wild-type CYO1. These results suggested that the cysteine residues at positions 138 and 161 were important for PDI activity. Low PDI activity of CYO1 was observed when NADPH or NADH was used as an electron donor. However, PDI activity was observed with CYO1 and glutathione, suggesting that glutathione may serve as a reducing agent for CYO1 in vivo. Based on analysis with the split-ubiquitin system, CYO1 interacted with the A1 and A2 subunits of PSI and the CP43 and CP47 subunits of PSII. Thus, CYO1 may accelerate the folding of cysteine residue--containing PSI and PSII subunits by repeatedly breaking and creating disulfide bonds.  相似文献   

18.
1. Electrophoretic analyses of lactate dehydrogenase isozyme patterns of three species of temperate fish belonging to family Sciaenidae (order Perciformes) indicates that at least three LDH loci--Ldh-A, Ldh-B and Ldh-C are active. 2. The subunits encoded by these loci occurred at different levels in the different tissues and organs analyzed. 3. The products of these loci show different response to changes in temperature. The results were obtained by electrophoretic analyses. 4. Thermostability of skeletal muscle, heart and eye lactate dehydrogenase incubated at 60 degrees C for different periods of time were examined. 5. Relative activities of LDH isozymes were compared by Klebe's method to determine pattern of divergence of duplicated gene expression in the three species studied.  相似文献   

19.
The spectrum of lactate dehydrogenase (LDH) isozymes in erythrocytes of silver foxes was investigated by means of electrophoretic and immunochemical methods. By means of electrophoresis it is shown that differences in LDH isozyme spectrum between the animals homozygous for the gene Ldr-1a and those homozygous for the gene Ldr-1b are most conspisions at the age of 90-100 days of postnatal development. By means of the immunochemical method three groups of animals are distinguished differing in the LDH content in erythrocytes: the animals with a high LDH content (81.0 mcg/ml) and with a low LDH content (54.14 mcg/ml), which are homozygous for the gene Ldr-1b and Ldr-1a respectively, and the animals with intermediate LDH content (64.58 mcg/ml), which are heterozygous. The data obtained suggest that the effect of the gene Ldr-1a is associated with the decrease of the quantity of A subunits of LDH. It is assumed that the mechanism of the gene Ldr-1a action is realized either by means of the decrease of the synthesis of the A LDH subunits, or by means of the increase of the rate of their degradation.  相似文献   

20.
An electrophoretic investigation of the lactate dehydrogenase isozymes in twelve euteleostean species was conducted. Expression of the LDH-C locus and association of the A and B subunits in these fishes is discussed. InChanos chanos this locus is found prevalent in the liver suggesting a close relation to otophysans. Presence of four iso-spaced A-B polymers in this species is a character different from otophysans which are provided with five iso-spaced A-B tetramers. Absence of tissue specificity of C4 band in all holocentrid species suggests a possible primitive phylogenetic status of this family in the Beryciformes. However, expression of the LDH-C locus provides no strong evidence for the resolution of the phylogenetic positions of the Polymixiidae and the other groups examined.  相似文献   

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