Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: EC:1.1.1.37 (malate dehydrogenase)
4,591 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Electrophoretic variations ascribable to three enzyme loci coding for esterase-1 and -4 (ES1 and ES4) and a malate dehydrogenase-2 isozyme (MDH2) were studied in interspecific backcrosses of fishes of the genus Xiphophorus (Poeciliidae). Normal segregation was demonstrated for all three loci. Linkage analyses indicated a gene order of ES1-6%-ES4-33%-MDH2. This group [designated linkage group (LG) V] was shown to assort independently from the 11 loci comprising LG's I-IV and from 18 other informative markers, with the limits of the data. A factor controlling the extent of development of inherited melanomas was demonstrated to be associated only with LG V loci, implying predominant control by a single gene, which probably determines the completeness of differentiation of macromelanophores in hybrids. Possible explanations for variability in the apparent chromosomal position of the melanoma severity gene, as assessed by estimates of recombination with the LG V enzyme loci, are discussed.
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PMID:Linkage group V of platyfishes and Swordtails of the genus Xiphophorus (Poeciliidae): linkage of loci for malate dehydrogenase-2 and esterase-1 and esterase-4 with a gene controlling the severity of hybrid melanomas. 657 73

Heparinized venous blood was stored under sterile conditions at different temperatures (4 C, 20 C, 37 C) for various intervals (0-7 days). After storage the granulocytes and lymphocytes were isolated with routine methods. Naphthol AS-D-chloroacetate esterase as a granulocyte marker and acid alpha-naphthyl acetate esterase as a T-lymphocyte marker were identified on smears of the washed cell suspension. Different enzymes were identified in the cell sediment with electrophoresis. Relatively pure lymphocyte suspensions were obtained within the first 24 h. After this time, however, the percentage of these mononuclear cells declined markedly. The percentage of isolated granulocytes varied slightly; there was a marked predominance of granulocytes (more than 70%) at all intervals investigated during the isolation. Cytochemical analysis of the granulocytes and lymphocytes indicated that the decrease in the percentage of enzyme-positive cells depends in each case on the duration of the storage interval. During the first 24 h, only PGM1 and GOTM could be identified in the lymphocyte suspension with horizontal starch gel electrophoresis. The enzymes PGM1, PGM3, PGI, MDH, GOTM, 6-PGD, ADA could always be identified in the granulocyte suspension; AK, FUCA, MEM could be occasionally identified; and GPT and GLO could never be identified.
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PMID:[Enzyme activity of isolated leukocyte populations. I. Cytochemical and zymographic studies of stored blood under various storage conditions]. 660 6

Adipose tissue from fetuses decapitated at 45 d of gestation was removed and structurally and histochemically analyzed at 65, 85 and 110 d of gestation. Subcutaneous adipose tissue from decapitated and control fetuses at 65 d of gestation was histologically and histochemically similar. A reduced number of fat cell clusters in the outer layer of subcutaneous tissue and a poorly developed dermis was evident in decapitated fetuses at 85 d of gestation. Fat cell size was similar for control and decapitated fetuses at 65 d of gestation, whereas cells in 85 d-old decapitated fetuses were larger than cells in control fetuses. Adipocytes from control and 85 d-old decapitated fetuses were histochemically similar except for an elevated number of esterase positive cells in decapitated fetuses. At 110 d of gestation, adipocytes from decapitated fetuses had higher activities of the following enzymes than did control adipocytes: malate dehydrogenase (NADP dependent) glucose 6-phosphate dehydrogenase NADP dependent), isocitrate dehydrogenase (NADP dependent), alpha-glycerol phosphate dehydrogenase (NADP dependent), NADPH-tetrazoleum reductase and esterase. Levels of succinate dehydrogenase, glutamate dehydrogenase and NADH-tetrazoleum reductase were similar in cells from controls and decapitated fetuses. These data indicate that fetal decapitation probably exerts a positive influence on enzymes involved in lipid synthesis. However, fetal decapitation also exerts a negative influence on fat cell hyperplasia.
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PMID:Histochemical and cellular aspects of adipose tissue development in decapitated pig fetuses: an ontogeny study. 674 43

Plasmodium falciparum trophozoites, isolated by mechanical rupture of infected human erythrocytes, were analyzed for purity by determination of the specific activities of a number of marker enzymes selected for high activity, stability, and convenience of assay procedures. The specific activities of the soluble enzymes lactate dehydrogenase and malate dehydrogenase were much higher in the parasite than in the erythrocyte. The soluble enzyme glutamate dehydrogenase (NADP+) was specific for the parasite. Samples of 100,000 g supernate obtained from parasites that appeared to be free from contaminating erythrocytes consistently showed specific activities of about 4, 3 and 0.1 mumole/min/mg for lactate dehydrogenase, malate dehydrogenase and glutamate dehydrogenase, respectively. Moreover, preparations of parasites that exhibit these specific activities showed low acetylcholine esterase activity in the membrane fractions. The specific activities of these soluble marker enzymes did not appear to be strain dependent. A preparation of highly purified trophozoites obtained by free flow electrophoresis and analyzed for purity by electron microscopy exhibited the same specific activities for these marker enzymes. The use of specific activities of selected marker enzymes should be very useful for determining the purity of preparation of parasites when used in conjunction with other methods.
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PMID:Marker enzymes of Plasmodium falciparum and human erythrocytes as indicators of parasite purity. 675 98

The gastric mucosa of marmosets is devoid of UDPG-GT; phosphorylases; G-6-PA; F-1,6-PA; alanyl aminopeptidase and leucine aminopeptidase. Only the acid phosphatase was seen with a stronger reactivity in the chief cells. The other enzymes (LDH; G-6-PDH; 6-PGDH; NADPH2-TR; cis-aconitase; ICDH; SDH; MDH; cytochrome oxidase; NADH2-TR; a-GPDH; b-OHBDH and nonspecific esterase) showed a stronger reactivity in the parietal cells.
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PMID:[Histoenzymologic data on the epithelial cells of the gastric mucosa of marmosets (Callithrix jacchus & Callithrix penicillata)]. 677 86

The maximal rate of some cerebral enzymatic activities related to energy transduction (hexokinase; phosphofructokinase; lactate dehydrogenase; citrate synthase; malate dehydrogenase; total NADH-cytochrome c reductase; cytochrome oxidase), amino acid metabolism (glutamate decarboxylase; glutamate dehydrogenase) and cholinergic metabolism (acetylcholine esterase) were tested in the cerebral cortex and in sub-cortical area of rats. The evaluations were performed both in the homogenate in toto and in the crude mitochondrial fraction, before and after a postdecapitative normothermic ischemia of 5, 10, 20, and 40 min duration. The results are discussed also with respect to the pharmacological pretreatment with two biological substances which may modulate amino acid (L-alanine) and phospholipid metabolism (CDP-choline). The analysis of the present data suggests the occurrence in brain tissue of a variety of interrelated factors implicated in the ischemia-induced changes of the maximal rate of the enzymatic activities related to the energy transduction. These include: (a) rearrangement of the enzymatic activities because of the changed metabolic and chemico-physical condition; (b) decrease in the activity of enzymes related to the electron transfer chain and glycolysis; (c) changes in enzymes related to mitochondrial membranes. The effects of in vivo administration of alanine or CDP-choline, even if significant, are not consistent throughout the time period studied.
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PMID:Changes induced by ischemia on some cerebral enzymatic activities related to energy transduction and amino acid metabolism. 685 30

Interspecific genetic differences in malate dehydrogenase (MDH), lactate dehydrogenase (LDH), superoxide dismutase (SOD), and esterase (EST) isozymes in carp (Cyprinus carpio) and goldfish (Carassius auratus) were used to examine the allelic expressions in the hybrid between these species. A unique liver SOD and muscle LDH phenotype unambiguously identifies all presumed hybrid individuals. There was no evidence of F2 or backcross phenotypes in hybrid individuals. Liver MDH and EST phenotypes in hybrids show a preferential expression of goldfish isozymes. Variation in the levels of carp liver MDH isozymes may result from the polymorphism of a regulatory mutation effecting isozyme expression, leading to gene silencing after duplication.
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PMID:Isozyme expression in F1 hybrids between carp and goldfish. 709 95

Zymogram patterns from 84 strains of dermatophyte fungi were obtained using polyacrylamide gradient gel electrophoresis of total cell protein extracts. The enzymes investigated were alpha-naphthyl acetate esterase, acid phosphatase, lactate dehydrogenase, malate dehydrogenase, tetrazolium oxidase and catalase. These patterns were used to construct similarity matrices and dendrograms using computerized techniques. The results showed that zymograms allowed some species to be readily recognized despite morphological variation. This was also seen in the dendrograms where, in addition, groupings based on ecological or sexual criteria could be distinguished.
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PMID:An electrophoretic study of enzymes as a tool in the taxonomy of the dermatophytes. 710 88

A biochemical system was devised to identify aneuploids of Nicotiana tabacum. Leaf tissue from 6 nullihaploids, 4 nullisomics, and 10 monosomics was analyzed electrophoretically on slab acrylamide gels. The staining systems used were for peroxidase, esterase, superoxide dismutase, malate dehydrogenase, and glutamate oxaloacetate transaminase. Nullihaploids and nullisomics could be distinguished from each other and from haploid or disomic types by their unique isozyme banding patterns. The banding patterns of the monosomics closely resembled those of the disomic. Morphologically similar aneuploids from different populations had similar isozyme banding patterns.
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PMID:Identification of aneuploids in Nicotiana tabacum by isozyme banding patterns. 711 87

Allelic heterogeneity within protein electromorphs at three loci was examined in populations of deer mice (Peromyscus maniculatus) collected from five localities across North America. We used a variety of electrophoretic techniques (including several starch and acrylamide conditions, gel-sieving, and isoelectric focusing) plus heat denaturation. Of particular interest was the supernatant glutamate oxalate transaminase system (GOT-1; aspartate aminotransferase-1 of some authors), which under standard electrophoretic conditions had been shown to exhibit basically a two-allele polymorphism throughout the range of maniculatus. The use of all of the above techniques failed to uncover any additional variation for GOT-1 in these populations. Similarly, no new scorable variation was resolved at the essentially monomorphic malate dehydrogenase-1 locus by additional conditions of electrophoresis. In marked contrast to the results for the above two enzymes, the use of multiple conditions of electrophoresis resolved the 8 standard-condition electromorphs of esterase-1 into a total of 23 variants showing strong geographic differentiation in frequency. These 23 electromorphs were further divided into a total of 35 variants by thermal stability studies. However, the allelic nature of all of the thermal stability esterase variants remains to be documented. The results of this study, taken together with the remarkable geographic heterogeneity for this species in ecology, morphology, karyotype and mitochondrial DNA sequence, suggest that some form of balancing selection may be acting to maintain the GOT-1 polymorphism.
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PMID:An assessment of "hidden" heterogeneity within electromorphs at three enzyme loci in deer mice. 715 46


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