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Inhibitory effect of regucalcin on protein phosphatase activity in the nuclei of rat kidney cortex.

The role of regucalcin, which is a regulatory protein of calcium signaling, in the regulation of protein phosphatase activity in the nuclei of rat kidney cortex was investigated. Protein phosphatase activity towards phosphotyrosine, phosphoserine, and phosphothreonine was found in the nuclei. The enzyme activity towards three phosphoamino acids was significantly increased by the addition of calcium chloride (10-50 microM) in the enzyme reaction mixture. This increase was significantly inhibited by trifluoperazine (25 or 50 microM), an antagonist of calmodulin. The presence of regucalcin (50 or 100 nM) in the enzyme reaction mixture caused a significant decrease in protein phosphatase activity towards three phosphoamino acids. This effect was also seen in the presence of calcium (25 microM) and/or calmodulin (5 microg/ml). Protein phosphatase activity towards three phosphoamino acids was significantly increased in the presence of anti-regucalcin monoclonal antibody (25 or 50 ng/ml) in the enzyme reaction mixture. This effect was completely blocked by the addition of regucalcin (100 nM). The effect of antibody (25 ng/ml) in increasing protein phosphatase activity towards phosphotyrosine was significantly inhibited by vanadate (10(-4) M). Also, the antibody's effect towards phosphoserine and phosphothreonine was significantly inhibited by cyclosporin A (10(-5) M). Endogenous regucalcin was found in the nuclei of rat kidney cortex using Western blot analysis. Nuclear regucalcin level was significantly reduced by the administration of saline (0.9% NaCl) for seven days in rats. Protein phosphatase activity towards three phosphoamino acids was significantly decreased by saline administration. The effect of anti-regucalcin monoclonal antibody (25 ng/ml) in increasing protein phosphatase activity towards three phosphoamino acids was weakened in the renal cortex nuclei of saline-administrated rats. The present study demonstrates that endogenous regucalcin plays a suppressive role in the regulation of protein phosphatase activity in the nuclei of rat kidney cortex cells.

Animals↗

[Dehydrogenases of the pentose-phosphate pathway of the kidney cortex and medulla in normal and alloxan diabetic rats].

In a supernatant of rat kidney cortex homogenate activities of glucose-6-phosphate and 6-phosphogluconate dehydrogenases were shown to be approximately equal. These enzymes were found in kidney medulla; their activities, similar to those glycolytic enzymes, were higher in kidney medulla than in cortex. In diabetes the activity of glucose-6-phosphate dehydrogenase from kidney cortex was increased.

Animals↗

Activation of urinary inactive kallikrein by an extract from the rat kidney cortex.

Activation of purified urinary inactive kallikrein by an extract from the rat kidney cortex was investigated. The extract produced a dose-dependent activation of the inactive kallikrein and the optimum pH for this activation was 5.0. Marked depression of the activation was observed when the extract was pre-incubated with E-64, p-CMB and iodoacetate, but not with DFP, PMSF or pepstatin A. The molecular weight of the inactive kallikrein (Mr 44,000) was reduced to 38,000 by treatment with the extract, this molecular weight value being identical with that of urinary active kallikrein. These results indicate that the rat kidney cortex contains a protease catalyzing conversion of urinary inactive kallikrein into its active form, and that the protease has properties compatible with those of a thiol protease, but not of trypsin which has been used as a tool for the activation of urinary inactive kallikrein. The thiol protease is probably one of regulators of the kallikrein-kinin system in the kidney.

Animals↗

Lack of response of (Ca2+ + Mg2+) ATPase to atrial natriuretic peptide in basolateral membranes from kidney cortex of chronic diabetic rats.

Incubation of basolateral membranes obtained from control rat kidney cortex in the presence of atrial natriuretic peptide (ANP) increased (Ca2+ + Mg2+) ATPase activity in a dose-dependent manner. Such response was absent in membranes obtained from animals made diabetic by streptozotocin injection (65 mg/kg, iv). The differential responses in the ATPase activity were not due to changes in the affinity for Ca2+ and insulin treatment in the diabetic animals completely reversed the situation. Our data suggest that ANP may mediate its cellular effects in part by changes in cellular Ca2+ homeostasis in kidney cortex and the lack of response of (Ca2+ + Mg2+) ATPase to ANP in chronic diabetes may contribute to the development of intracellular Ca2+ overload and nephropathy.

Animals↗

Protective effects of 2,3-dimercaptopropane-1-sulfonate on mercuric chloride-induced acute inhibition of enzymes from rat duodenal mucosa and kidney cortex.

Acute inhibitory effects of mercuric chloride on the activities of several enzymes from rat duodenal mucosa and kidney cortex and the protection provided by 2,3-dimercaptopropane-1-sulfonate (DMPS) were examined. Activities of carbonic anhydrase in homogenate, brush border and cytosol and of Mg(2+)-dependent, HCO3-stimulated ATPase in homogenate and brush border of duodenal mucosa and kidney cortex and activities of kidney microsomal Mg(2+)-dependent, Na(+)-K(+)-stimulated ATPase were all decreased following administration of HgCl2 (1-3 mg Hg/kg body weight s.c. once daily for 3 days). Decreases occurred generally in a dose-dependent manner and went back to near normal or normal levels by the combined administration of 20 and 30 mg DMPS/kg per day for 3 days. The concentration of serum urea nitrogen was increased about 8 times by the administration of 2 mg Hg/kg and restored to normal by the concomitant administration of 30 mg DMPS/kg. After the administration of 2 mg Hg/kg per day for 3 days, about half of the renal cortical proximal tubuli were necrotic. Administration of 30 mg DMPS/kg restored these changes to almost normal. The results suggest that DMPS is useful in mitigating acute Hg poisoning and that part of the protective effect of DMPS on enzyme damage induced by Hg poisoning may be due to its chelating action.

Animals↗

Chloride dependence of the sodium-dependent glycine transport in pig kidney cortex brush-border membrane vesicles.

The Na+-dependent glycine uptake in pig kidney cortex brush-border membrane vesicles is specifically enhanced by the presence of Cl-. The Na+-independent glycine uptake is not affected by Cl-. Various anions tested could not substitute Cl- in the activation of the Na+-dependent glycine transport. Cl- is specifically required on the outer membrane side. The Na+-dependent glycine uptake is higher in the presence of an inwardly directed Cl- gradient than the one measured in the presence of equilibrated Cl-. The Na+-dependent glycine uptake depends on, and is saturable at increasing Cl- concentrations. By studying the activation of glycine uptake by Na+ in the presence and in the absence of Cl-, evidence was found that two different Na+-dependent glycine transport pathways are present in pig kidney cortex brush-border membrane vesicles. The kinetics of the glycine uptake measured in the presence of an inwardly directed NaCl gradient show the presence of two glycine transport systems, a low-affinity, high-capacity one and a high-affinity, low capacity one. In the absence of Cl- the high-affinity, low-capacity transport is almost suppressed, thus indicating the presence of a high-affinity glycine transport system simultaneously dependent on both Na+ and Cl- ions.

Animals↗

Effect of various aminoglycoside antibiotics on glucose formation in isolated rabbit kidney-cortex tubules.

The effect of six aminoglycoside antibiotics on the rate of gluconeogenesis was studied in isolated rabbit kidney-cortex tubules incubated with various substrates. All antibiotics studied did not affect glucose formation from both malate and 2-oxoglutarate. The rank order of the drug-induced inhibition of glucose formation from lactate, pyruvate and propionate was the following: neomycin = gentamicin greater than tobramycin greater than kanamycin = amikacin greater than streptomycin. This in principle corresponds to their ability to diminish pyruvate carboxylation in isolated kidney-cortex mitochondria, as well as to their known nephrotoxic potential observed in vivo. Aminoglycoside antibiotics decreased the respiration of tubule suspension incubated with various substrates. However, the rank order of the inhibition by antibiotics of oxygen uptake was different from that observed for gluconeogenesis, suggesting that the rate of energy generation does not limit glucose formation under conditions studied.

Aminoglycosides↗

Cadmium concentration in the kidney cortex of occupationally exposed workers measured in vivo using X-ray fluorescence analysis.

A method for in vivo X-ray fluorescence analysis of the cadmium concentration in the kidney cortex has been improved and tested in 20 selected male occupationally cadmium-exposed workers (duration of exposure 7-39 years). The concentration of cadmium in kidney cortex ranged from 47 to 317 (median 141) micrograms/g. The concentration of cadmium in blood was 32-160 (median 64) nmole/liter, cadmium in urine was 2.5-13 (median 5.4) nmole/mmole creatinine, and beta 2-microglobulin in urine was 3.3-68 (median 14) micrograms/mmole creatinine. In individuals, the relationship between duration of exposure, time-integrated exposure, and cadmium level in urine on the one hand and cadmium level in the kidney on the other varied considerably. Direct in vivo analysis of the concentration of cadmium in the kidney cortex is therefore valuable as a complement to the other tests when monitoring cadmium exposure. Our method is sensitive, practically free from risk, and can b performed by routine at low costs.

Adult↗

[What is the current age and sex-related cadmium burden of the human kidney cortex?].

55 persons of either sex in the age bracket between 0.02 and 87 years had to be examined by experts in forensic medicine. In these examinations, slices of kidney cortex were removed and prepared for cadmium(Cd)-determination by atomic absorption spectrophotometry. The samples were wet ashed by a special and quick method developed in our laboratory, using concentrated (65%) HNO3 for a short period of 1 hour at 90 degrees C. The main results of the present study were that Cd accumulation in the kidney cortex was delayed in the age group between 0.02 and 40 years. The highest Cd concentration of 27 micrograms/g wet weight was found in the age group between 50-59 years. In persons of higher age, above 60 years, the Cd concentrations were generally lower than in persons of the age group between 50-59 years; however, this decline does not seem to be significant. Summing up, we can say that the delayed increase in Cd concentrations in the kidney cortex of persons in the age group between 0.02 and 40 years might be regarded as the first positive result of the restrictive use of Cd materials, resulting in food intake with lower Cd contamination. The present study should be repeated after about 5 years to confirm whether this hopeful assumption is true.

Adolescent↗

Identification of endothelin receptor subtypes in rat kidney cortex using subtype-selective ligands.

125I-Endothelin (ET)-1 and 125I-ET-3 displayed specific, saturable, and high affinity binding to membranes prepared from rat kidney cortex. Saturation binding experiments using 125I-ET-1 and 125I-ET-3 revealed that 125I-ET-3 binding sites were 40-50% less abundant than 125I-ET-1 binding sites. The dissociation constants (Kd) and maximum binding (Bmax) for 125I-ET-1 and 125I-ET-3 with these membranes were 218 +/- 23 pM and 275 +/- 20 fmol/mg of protein and 207 +/- 19 pM and 113 +/- 17 fmol/mg of protein, respectively. In the presence of 10 nM sarafotoxin 6c, a selective agonist for ETb receptors, 125I-ET-1 binding was decreased by 45-50% and 125I-ET-3 binding was totally abolished, suggesting that approximately 40-50% of kidney cortex ET receptors are of the ETB subtype and that 125I-ET-1 binds to both ETA and ETB receptors with the same high affinity, whereas 125I-ET-3 binds to only ETB receptors with high affinity. In addition, in the presence of BQ123 [cyclo(D-Trp,D-Asp,L-Pro,D-Val,L-Leu)], a selective antagonist for ETA receptors, 125I-ET-1 binding was decreased by 50%, whereas 125I-ET-3 binding was unaffected. Our results strongly suggest that rat kidney cortex contains ETA and ETB receptors in a 50:50 ratio and that sarafotoxin 6c and BQ123 are valuable tools in identifying the subtypes of ET receptors in various tissues.

Amino Acid Sequence↗

Multiple forms of cytochrome P-450 in kidney cortex microsomes of rabbits treated with 3-methylcholanthrene.

Cytochrome P-450 was purified from kidney cortex microsomes of rabbits treated with 3-methylcholanthrene. 6-Amino-n-hexyl-Sepharose 4B column chromatography of the cholate-solubilized microsomes yielded two cytochrome P-450 fractions, one of which was eluted from the column with 20 mM potassium phosphate buffer in the presence of 0.4% cholate and 0.08% Emulgen 913. This fraction was partially purified to a specific content of 4.49 nmol of cytochrome P-450/mg of protein. This P-450 fraction catalyzed myristate omega- and (omega-1)-hydroxylation with a turnover rate of 5.0 nmol/nmol of cytochrome P-450 in a reconstituted system containing NADPH-cytochrome c reductase, cytochrome b5 and phosphatidylethanolamine. It had no benzo(a)pyrene hydroxylation activity. The other cytochrome P-450 fraction, which was eluted from the column with 0.1 M potassium phosphate buffer in the presence of 0.4% cholate and 0.08% Emulgen 913, was purified to a specific content of 12.0 nmol of cytochrome P-450/mg of protein. Sodium dodecyl sulfate polyacrylamide gel electrophoresis of the final preparation gave a major polypeptide band with a molecular weight of 58,000. This cytochrome P-450 showed a maximal peak at 448 nm in the carbon monoxide difference spectrum of its reduced form. Its absolute spectrum of the oxidized form had low-spin characteristics. It catalyzed benzo(a)pyrene hydroxylation with a turnover rate of 3.63 nmol/nmol of cytochrome P-450 in a reconstituted system containing NADPH-cytochrome c reductase and phosphatidylcholine, whereas little myristate hydroxylation activity was detected. The results demonstrate the occurrence of multiple forms of cytochrome P-450 in rabbit kidney cortex microsomes.

Animals↗

Analysis of the distribution of Na+/H+ exchanger isoforms among the plasma membrane subfractions of bovine kidney cortex: reevaluation of methods for fractionating the brush-border and the basolateral membranes.

Distribution of the NHE1 and the NHE3 isoforms of Na+/H+ exchanger in the plasma membranes of bovine kidney cortex was analyzed. Fractionation of the plasma membranes by centrifugation on a Percoll density gradient resulted in clear separation of the basolateral membranes (BLM) from the brush-border membranes (BBM), with Na+,K+-ATPase and aminopeptidase M as their respective marker enzymes. Under these conditions, a 110 kDa protein cross-reactive with an anti-NHE1 antibody was detected exclusively in the BLM fractions, while a 90 kDa protein cross-reactive with an anti-NHE3 antibody was detected in the BBM fractions. A conventional Mg2+-precipitation method for obtaining the BBM, which is adequate with rabbit kidney as a starting material, turned out to be inadequate with bovine kidney cortex, since a considerable amount of the 110-kDa NHE1 protein was detected in the bovine kidney BBM fraction prepared by this procedure, together with the 90-kDa NHE3 protein. Percoll density gradient centrifugation is thus strongly recommended for the fractionation of BBM and BLM of bovine kidney cortex. The bovine NHE1 isoform was shown to be unique in that it is far less sensitive to the inhibition by ethylisopropylamiloride than that of other species.

Amiloride↗

The influence of lipogenic and lipolytic conditions on the pentose phosphate pathway dehydrogenases in rat-kidney-cortex.

The effects of various lipogenic and antilipogenic states on the activities of rat-kidney cortex glucose 6-phosphate dehydrogenase and 6-phosphogluconate dehydrogenase have been studied. These conditions are related to the long-term administration of different diets, such as high-carbohydrate (80%) and high-fat (23%), and also to a state of fast. Contrary to what happens in liver cells and kidney cortex during a high protein diet administration, none of these nutritional conditions produced significant changes in the kinetics of either kidney hexose monophosphate dehydrogenases.

Animals↗

Evaluation of the rate-limiting steps in the pathway of glucose metabolism in kidney cortex of normal, diabetic, cortisone-treated and growth hormone-treated rats.

1. The activities of gluconeogenic and glycolytic enzymes and the concentrations of citrate, ammonia, amino acids, glycogen, glucose 6-phosphate, acetyl-CoA, lactate and pyruvate were measured in kidney cortex of normal, diabetic, cortisone-treated and growth hormone-treated rats. 2. In kidney cortex of diabetic, cortisone-treated and growth hormone-treated rats the activities of glucose 6-phosphatase (EC 3.1.3.9), fructose 1,6-diphosphatase (EC 3.1.3.11) and phosphopyruvate carboxylase (EC 4.1.1.32) were increased. 3. The activities of glutamate dehydrogenase (EC 1.4.1.3), alanine aminotransferase (EC 2.6.1.2), aspartate aminotransferase (EC 2.6.1.10) and pyruvate carboxylase (EC 6.4.1.1) were increased in diabetic and cortisone-treated rats. In growth hormone-treated rats the activity of aspartate aminotransferase was depressed but those of the other three enzymes were unchanged. 4. The activity of hexokinase (EC 2.7.1.1) was not altered in any of these conditions. Phosphofructokinase (EC 2.7.1.11) activity was depressed only in growth hormone-treated rats. Pyruvate kinase (EC 2.7.1.40) activity was depressed in cortisone-treated and growth hormone-treated rats but unchanged in diabetic rats. 5. Amino acids, acetyl-CoA and glucose 6-phosphate contents were increased in rat kidneys in all these three conditions. Ammonia content was increased in diabetic and cortisone-treated rats but was markedly diminished in growth hormone-treated rats. 6. The [lactate]/[pyruvate] ratio was elevated in diabetic and cortisone-treated rats but unchanged in growth hormone-treated rats. Citrate content was increased in the kidney cortex of diabetic and growth hormone-treated rats but was unchanged in cortisone-treated rats. The activity of ATP citrate lyase (EC 4.1.3.8) was depressed in diabetic and growth hormone-treated rats but was increased in cortisone-treated rats. 7. Glycogen content was moderately elevated in growth hormone-treated rats and markedly elevated in diabetic rats, whereas no change in glycogen content was observed in cortisone-treated rats. Glycogen synthetase (EC 2.4.1.11) activity was unchanged in all these three conditions. Phosphorylase (EC 2.4.1.1) activity was not affected in cortisone-treated rats but was depressed in diabetic and growth hormone-treated rats.

Alanine Transaminase↗

gamma-Glutamyltransferase in glomeruli and tubules of rat kidney cortex: effect of experimental diabetes.

A significant and reproducible fraction of kidney cortex gamma-glutamyltransferase (EC 2.3.2.2) activity has been found associated with isolated glomeruli, the specific activity was approximately half that of proximal tubules. The gamma-glutamyltransferase activity of both glomeruli and tubules was decreased, to about 50--60% of the control value, in the alloxan-diabetic group. The possible functions of gamma-glutamyltransferase in kidney glomeruli are discussed.

Alloxan↗

Phosphatidylinositol kinase and diphosphoinositide kinase of rat kidney cortex: properties and subcellular localization.

The properties of phosphatidylinositol kinase and diphosphoinositide kinase from rat kidney cortex were studied. The enzymes were completely Mg2+-dependent. Cutscum detergent activated phosphatidylinositol kinase, but diphosphoinositide kinase was inhibited by all detergents tested. The pH optima were 7.7 for phosphatidylinositol kinase and 6.5 for diphosphoinositide kinase. On subcellular fractionation of kidney-cortex homogenates by differential centriflgation, the distribution of phosphatidylinositol kinase resembled that of the marker enzymes for brush-border, endoplasmic-reticulum and Golgi membranes. Diphosphoinositide kinase distribution resembled that of thiamin pyrophosphatase (assayed in the absence of ATP), diphosphoinositide phosphatase and triphosphoinositide phosphatase. Activities of both kinases were low in purified brush-border fragments. Diphosphoinositide kinase is probably localized in the Golgi complex.

Adenosine Triphosphate↗

Preparation of membrane vesicles from kidney cortex lysosomes using amino acid methyl ester.

A procedure for the preparation of intact membrane vesicles from kidney cortex lysosomes is reported. Highly purified preparations of lysosomes were isolated from rat and buffalo kidney cortex by Percoll density gradient centrifugation. The lysosomal membrane vesicles were prepared by osmotic rupture of the organelle with glutamate dimethyl ester. The integrity of the vesicles was demonstrated by their capacity to hold K+ and maintain H+ gradients.

Animals↗