Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: EC:4.1.2.13 (aldolase)
3,461 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

After a brief exposition to glucose, Thiobacillus acidophilus was isolated from a culture of iron-grown T. ferrooxidans. Physicochemical analysis of its DNA showed a G+C content of 62.9-63.2%. The new isolate grows best at 25-30 degrees C and at pH 3.0. Growth is possible between pH 1.5 and 6.0. Thiobacillus acidophilus is apparently strictly aerobic. Ammonium salts are the only suitable source of nitrogen. The bacterium is a facultative autotroph. In addition to elemental sulfur, it obtains energy from organic compounds such as D-glucose, D-galactose, D-fructose, D-mannitol, D-xylose, D-ribose, D-arabinose, L-arabinose, sucrose, sodium citrate, malic acid,dl-aspartic acid, and dl-glutamic acid. Thiobacillus acidophilus possesses the key enzymes of the tricarboxylic acid (TCA) cycle including NAD-and NADP-linked isocitric dehydrogenase and alpha-ketoglutarate dehydrogenase, and the key enzymes of the hexose monophosphate pathway (glucose-6-phosphate and 6-phosphogluconate dehydrogenase, and fructose 1,6-diphosphate aldolase). NADH oxidase has been found in particulate fraction of extracts. Rhodanese and thiosulfate oxidase have also been detected.
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PMID:Thiobacillus acidophilus sp. nov.; isolation and some physiological characteristics. 23 84

In the subcommissural organ (SCO) of the guinea pig, rat, golden hamster, and mouse the activity and distribution of enzymes related to the energy-supplying metabolism and of some marker enzymes of different cell organelles have been investigated by means of mostly modified histochemical methods. The results were compared with findings in the ciliated ependyma of the ventricular wall and with those in the ependyma of the choroid plexus of the third ventricle. In the ependymal part of the SCO only a moderate activity of hexokinase is observed in its specialized columnar cells whereas a high activity is present both in the ciliated ependyma and the choroid plexus. - The staining pattern of glucose-6-phosphatase is similar to that of hexokinase but this enzyme is found is the SCO only. - Likewise hexokinase, glycogen granules and enzymes related to glycogen metabolism (phosphoglucomutase, uridine-diphosphoglucose pyrophosphorylase, glycogen synthetase and phosphorylase) are regularly found most numerous and active in the nuclear and supra-nuclear area of the ependymal part. These enzymes are less active in both the other ependymal regions. - Uridine-diphosphoglucose dehydrogenase could not be demonstrated in the SCO. The NADP-linked enzymes of the pentose phosphate shunt, glucose-6-phosphate and 6-phosphogluconate dehydrogenase, show a moderate activity which decreases also from the nuclear towards the apical area of the ependymal cells of the SCO. Enzymes of the glycolytic pathway, such as glucosephosphate isomerase, fructose-6-phosphate kinase, fructose-I,6-diphosphate aldolase, glyceraldehyde-3-phosphate and lactate dehydrogenase, are highly active in the SCO and are located mainly in the supranuclear area, too. Fructose-1,6-diphosphatase could not be demonstrated thus indicating that in the SCO the pathway is most probably only glycolytic but not gluconeogenetic. Compared to the ependyma of the ventricular wall and of the choroid plexus, in the SCO the M type subunits of lactate dehydrogenase predominate. Glycolytic enzymes are also very active in the choroid plexus but less in the ciliated ependyma. Compared to the ciliated ependyma and especially to the ependyma of the choroid plexus, the activities of enzymes which are only present in mitochondria (NAD-linked isocitrate dehydrogenase, succinate dehydrogenase, NAD-linked malate dehydrogenase after preextraction, cytochrome oxidase, 3-hydroxybutyrate and glycerolphosphate and glutamate dehydrogenase) are relatively low. Mitochondria are accumulated near the superior pole of the nuclei as well as in the most apical part of the ependymal cells. - The staining pattern of NADP-linked isocitrate and malate dehydrogenase as well as of NADH dehydrogenase suggests that these enzymes are localized both in and out of mitochondria. The extramitochondrial activity of the first two enzymes might be localized in the cytosol. The extramitochondrial activity of NADH dehydrogenase might be localized in the endoplasmic reticulum...
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PMID:Enzymatic organization of the subcommissural organ. 123 49

Common bile duct ligation (CBDL) in rats was used to induce liver disease and secondary kidney damage. The biochemical changes in the liver, kidney and plasma were studied at 3, 6, 10 and 21 days post CBDL. The observed alterations climaxed at the 6th day following ligation. Renal, activities of aldolase (ALD), lactic dehydrogenase (LDH), isocitric dehydrogenase (ICDH), sorbitol dehydrogenase (SDH), and alkaline phosphatase (ALP), were lowered in CBDL rats. Further, microsomal Na,K-ATPase and Mg-ATPase and mitochondrial oxidative-phosphorylation were inhibited. In the liver from CBDL rats the activities of aspartate aminotransferase (AST), Mg-ATPase and ALP were elevated, while SDH, ALD, malic dehydrogenase (MDH), LDH, malic enzyme (ME) and Na,K-ATPase were lowered. Plasma enzymes, AST, ALP, MDH, LDH, ALD, acid phosphatase (ACP) and ICDH and the metabolites bile acids, bilirubin, creatinine and urea were elevated. Addition of bile acids or bilirubin at concentrations comparable to those found in the plasma of CBDL rats, to the reaction mixture of the various enzymes strongly inhibited most, particularly mitochondrial oxidative phosphorylation. High concentrations of these substances in the blood may explain the development of renal failure during liver disease and its reversibility when liver function returns to normal.
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PMID:Biochemical changes in liver, kidney and blood associated with common bile duct ligation. 378 11

Rats inoculated with Streptococcus faecalis developed endocarditis and demonstrated a 6- to 30-fold increase in aldolase, isocitric dehydrogenase, phosphohexose isomerase, and lactic dehydrogenase. The animals infected with Bacillus subtilis did not develop overt disease nor significant increases in enzyme activities, but viable organisms were recovered at 2 weeks. Rats inoculated with mixed culture of these organisms showed a 2- to 10-fold increase of enzyme activities without evidence of pathological anatomic changes. Both organisms were recovered at necropsy. The total protein and glycoproteins followed the patterns of enzyme activities. There were major changes in alpha(1), alpha(2), and beta globulins and glycoglobuulins at the early stages of infection. The protein-bound hexose changes coincided with the severity of S. faecalis infection, but were at normal levels after 72 hr of infection of B. subtilis and S. faecalis mixed infections. The results indicate that B. subtilis infection modified the pathogenicity of S. faecalis and by an unknown mechanism affected protein and glycoprotein production in serum of experimental rats.
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PMID:Biochemical changes in serum of pure and mixed Streptococcus faecalis and Bacillus subtilis infections in rats. 418 98

1. Contraction time (CT), (1/2) relaxation time ((1/2) RT), maximum twitch-tetanus tensions and the activity of two glycolytic enzymes (aldolase, pyruvic kinase) and two oxidative enzymes (malic and isocitric dehydrogenase) was studied in anterior tibialis (AT) and soleus (SOL) muscles from birth to 18 weeks of age.2. One hind leg of each of six kittens was casted at birth and the above parameters were examined in both casted and contralateral AT and SOL at 18 weeks of age.3. Differentiation of the contraction properties in normal developing fast muscle (AT) was closely paralleled by a marked elevation in glycolytic enzyme activity. Oxidative enzymic activity in AT and SOL was relatively unchanged from birth to 18 weeks of age, as was glycolytic activity in SOL.4. Disuse, due to immobilization, produced atrophy in AT and SOL muscles at 18 weeks of age. The CT of the casted SOL was slightly quicker than normal while the CT of the AT was unchanged. The glycolytic and oxidative enzymic activity in both casted muscles was generally unchanged but the contralateral AT had higher glycolytic activity than normal muscles.
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PMID:Enzymic and physiological studies on normal and disused developing fast and slow cat muscles. 549 74

Activities of 14 enzymes were determined in psoas muscle, smooth muscle, diaphragm, heart, brain, liver, kidney, spleen, pancreas, salivary glands, zygomatic gland, intestinal mucosa, subcellular fractions, and plasma of the dog. In pups, plasma activity of most enzymes was high, except iditol dehydrogenase (ID), glutamate dehydrogenase (GLD), alanine aminotransferase (ALT), aspartate aminotransferase (AST), and D-fructose-1,6-diphosphate aldolase (ALS). Alkaline phosphatase (ALP), ALS, cholinesterase (CHS), creatine kinase (CK), alpha-hydroxybutyrate dehydrogenase (HBD), lactate dehydrogenase (LD), and malate dehydrogenase (MD) decreased significantly (P less than 0.01) with increasing age, but in dogs greater than 7 months, all enzymes except CK, HBD, and ALT revealed reasonably constant plasma values. Enzymes ALT, GLD, CHS, and ID are specific for liver, CK and ALS for muscle, HBD to some degree for myocardium, and alpha-amylase for pancreas. The ALP and gamma-glutamyltransferase were located in microsomes, GLD in mitochondria, MD and AST in mitochondria and cytoplasm, and isocitric dehydrogenase, LD, and the other enzymes only in cytoplasm.
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PMID:Enzyme activities in the dog: tissue analyses, plasma values, and intracellular distribution. 703 2

In a study of 58 patients with various diseases of muscle or of the neuromuscular system, the serum activity of various enzymes was measured. Abnormal elevation of serum activities of aldolase, lactic dehydrogenase and, to a lesser extent, glutamic-oxalacetic transaminase and phosphohexose isomerase, was an almost constant feature in patients with progressive muscular dystrophy. These elevations were very frequent in dermatomyositis, common in acute cerebral vascular accidents, and rarely seen in other neurological disorders. Abnormal serum activity of iso-citric dehydrogenase was not observed in the course of the present study. Supplementary protein feeding of patients with muscular dystrophy had no effect on serum enzyme activity, no consistent effect on urinary creatine excretion and no effect on the strength of the patient or the course of the disease. Dystrophic muscles from a dystrophic strain of mice showed a decrease in activity of lactic dehydrogenase and aldolase below that of control muscle and an increase of iso-citric dehydrogenase activity. These findings, taken with the differences in serum activities of lactic dehydrogenase, aldolase and isocitric dehydrogenase in the dystrophic animals, support the conclusion that dystrophic animals handle these soluble enzymes in quite different ways.
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PMID:Serum enzymes; variations of activity in disease of muscle. 1361 35

A biochemical method for the verification of heat treatment of turkey breast meat was developed. The activities of 12 enzymes and residual soluble proteins were studied following heat treatment at various temperatures for different durations. The enzymes aspartate aminotransferase, creatine kinase, malic dehydrogenase, lactic dehydrogenase, isocitric dehydrogenase, and aldolase, showing initial preheating high specific activities, were shown to be valuable markers for the evaluation of heat treatment. Other enzymes, showing low specific activities were of little diagnostic value. Enzyme activities decreased in response to the maximum temperature levels and duration in which the meat was treated. The activities of the enzymes creatine kinase, malic dehydrogenase, lactic dehydrogenase, and isocitric dehydrogenase as well as the residual soluble proteins were shown to be good markers for the evaluation of heat treatment of fresh meat. Soluble residual proteins could also be estimated with commercial test strips. The use of hemoglobin-myoglobin oxidative activity was tried and shown to be a potential test using existing commercial test strips.
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PMID:Evaluation of Heat Treatment of Turkey Breast Meat by Biochemical Methods. 3108 58