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Biomedical subjects

V B Kumar

Publications and source records attributed to V B Kumar.

28 records · Page 2Linked to original sources

Immunosuppressive effect of honey on the induction of allergen-specific humoral antibody response in mice.

Our study with honey for its possible immunomodulatory activity reveals the immunosuppressive activity on induction of murine humoral antibody responses against different allergens as determined by passive cutaneous anaphylaxis and Ouchterlony double immunodiffusion techniques. Ovalbumin (OVA)-specific IgE antibody responses elicited with various doses were completely suppressed by different sources of commercial honeys. Honey is also found to have suppressed the induction of OVA-specific humoral antibody responses in different strains of mice. The results obtained in this work confirm the immunosuppressive activity of honey and suggest its possible applicability in conditions requiring immunosuppression.

Allergens↗

Identification of 5' flanking sequences that affect human pancreatic cholesterol esterase gene expression.

Pancreatic cholesterol esterase (CEL) is shown to play a significant role in cholesterol metabolism. As the hydrolytic property of CEL is important for transport of lipid esters, the extent of its expression is an important factor in the metabolism of lipids. Therefore, to identify the elements that modulate the transcription of its mRNA, we obtained several cosmid clones carrying the CEL gene. From one of these cosmid clones a 6.5-kb SmaI fragment that hybridizes to the 5' untranslated region of CEL cDNA was subcloned. Primer extension and S1 protection assays revealed that the 5' untranslated region is relatively short (only 20 nucleotides long). An analysis of the 5' flanking sequence revealed typical TATA and CCAAT boxes that impart tissue specificity. Further, consensus sequences of several cis elements described earlier could also be detected in this region. To identify the promoter sequences, various deletion constructs of the 5' region were made using polymerase chain reaction. These constructs were subcloned into a bacterial plasmid vector carrying chloramphenicol acetyltransferase (CAT) as the reporter gene and transfected into HepG-2 cells. CAT activity in the cell homogenate of the transfected cells was measured 48 h after transfection. Results showed that the promoter activity of human pancreatic CEL mRNA is in a large segment of 5' flanking sequences spanning the -10 and -930 nucleotides of its gene.

Base Composition↗

Inhibition of feeding by a nitric oxide synthase inhibitor: effects of aging.

Nitric oxide has been demonstrated to play a role in the modulation of food intake. With advancing age, there is a physiological decrease in food intake. The effect of the nitric oxide (NO) synthase inhibitor, NG-nitro-L-arginine methyl ester (L-NAME) on food intake in C57BL/6Nnia mice aged 3, 12 and 24 months was studied. L-NAME was more effective at decreasing food intake in 12- and 24-month-old mice than in the 3-month-old mice. NO synthase levels in the hypothalamus were increased in 16- and 25-month-old mice compared to 6-month-old mice (P < 0.01). NO synthase mRNA increased in 16- compared to 6-month-old mice, but decreased in 25-month-old mice. Overall, these studies may suggest that nitric oxide may play an increasingly important role in the feeding drive with advancing age.

Aging↗

Dietary induction of pancreatic cholesterol esterase: a regulatory cycle for the intestinal absorption of cholesterol.

Atherosclerosis has a strong dietary basis without a proven molecular mechanism for cholesterol absorption. To investigate the potential role of pancreas in this process and its interaction with the two dietary forms of cholesterol (free and esterified), we undertook to study the role of pancreatic cholesterol esterase in cholesterol absorption. The results showed that (i) cholesterol esters contribute a disproportionately high fraction of absorbed dietary cholesterol, (ii) rates of intestinal cholesterol absorption are related to pancreatic cholesterol esterase activity, (iii) mRNA specific for pancreatic cholesterol esterase is induced 15-fold by dietary sterol esters and 10-fold by free sterol, (iv) the induction of cholesterol esterase mRNA is reversible, and (v) free cholesterol transport into cultured human intestinal cells is enhanced 300% by pancreatic cholesterol esterase. These data implicate pancreatic cholesterol esterase as pivotal in a metabolic loop under positive feedback control for the absorption of dietary cholesterol, whether free or esterified.

Adenocarcinoma↗

Measurement of nitric oxide synthase and its mRNA in genetically obese (ob/ob) mice.

Recent studies have suggested a role for nitric oxide (NO) in the regulation of food intake. The obese (ob/ob) mouse is a genetic model of obesity. Previously, it has been demonstrated that ob/ob mice show a marked weight reduction when treated with a nitric oxide synthase inhibitor. In the studies reported here, we demonstrate increased levels of nitric oxide synthase (NOS) and its mRNA in the hypothalamus of genetically obese (ob/ob) mice compared to their lean littermate controls (ob/c). NOS levels were 0.016 +/- 0.001 nmol/mg/min in ob/ob compared to 0.009 +/- 0.001 in ob/c (p < 0.01) and NOS mRNA was 32.0 +/- 5.0 pg NOS mRNA/mg total RNA in ob/ob compared to 12.4 +/- 4.0 in ob/c (p < 0.05). These studies further support the possibility of a role for nitric oxide in the regulation of food intake.

Animals↗

Cloning and expression of rabbit pancreatic phospholipase A2.

Pancreatic phospholipase A2 (PLA2; E.C. 3.1.1.4) has been cloned from a gt11 library made from poly A+ RNA of adult rabbit pancreas. PLA2 catalyzes the hydrolysis of the 2-acyl ester bond of 3-sn-phosphoglycerides. As the rabbits are classically used for the study of diet induced changes in lipid metabolism, as a prelude to studying the diet and age dependent changes in this enzyme, we have undertaken to clone it from a rabbit pancreatic library. Three full length clones were obtained from the rabbit pancreatic library when probed with a synthetic oligonucleotide derived from the conserved portion of the molecule. One of these clones is completely sequenced and analyzed. The sequence consists of 606 nucleotides with an open reading frame of 441 nucleotides, coding for 147 amino acids which include a 15 amino acid leader peptide and a seven amino acid propeptide. Northern blot analysis revealed a major mRNA band at 600bp. When compared to phospholipases A2 of other species, rabbit PLA2 exhibited considerable conservation both at nucleotide and the protein level. In vitro translation of synthetic mRNA obtained from T7 polymerase transcription of the cDNA yielded a protein of apparent molecular weight of 15kd similar to that predicted from its primary structure.

Animals↗

Cloning and characterization of rabbit pancreatic colipase.

1. Among the digestive enzymes synthesized by pancreas, lipase is the principle lipolytic enzyme which hydrolyses dietary glycerides. 2. For its action it requires a coenzyme, colipase. 3. The molecular mechanisms of the interaction of these two are not fully understood. 4. Further, molecular events that regulate and influence lipid absorption are ill defined. 5. The rabbit is the conventional animal model for the study of lipid absorption. We have undertaken the molecular cloning, and characterization of rabbit pancreatic colipase, the coenzyme for pancreatic lipase. 6. Colipase has been cloned from a gt 11 library of an adult rabbit pancreatic cDNA by probing with an oligonucleotide derived from human colipase sequence. 7. The total reading frame consists of 321 nucleotides coding for 90 amino acids of the functional protein and 17 nucleotides of the leader peptide. 8. Northern blot analysis revealed a distinct band around 0.5 kb. Comparison with other species revealed an over all homology of 75% at the nucleotide level. 9. At the amino acid level highest conservation is observed at the lipase-binding region (AA 53-73). 10. Rabbit enzyme also retained the N-terminal pentapeptide of its preform. 11. The regions of homology and conservation may aid to define the sites of interaction of colipase with lipase.

Amino Acid Sequence↗

Molecular cloning and characterization of rabbit pancreatic triglyceride lipase.

Pancreatic lipase (triacylglycerol acylhydrolase, EC 3.1.1.3) has been cloned from a gt11 cDNA library made from poly A+ RNA of adult rabbit pancreas. Pancreatic lipase (PL) assists the absorption of dietary triglycerides by hydrolyzing them at 1 and 3 positions to free fatty acids and 2-monoacylglycerol in the presence of bile acids and colipase in the intestinal lumen. Since rabbits are classifically used for the study of the diet induced changes in the lipid metabolism, as a prelude to studying the diet and age dependent changes in the expression of this enzyme, a full length PL cDNA clone was obtained from its pancreas. The coding region of rabbit pancreatic lipase cDNA consists of 1407 base pairs contained in an open reading frame encoding 469 amino acids including the 16 that constitute the signal peptide. Northern blot analysis revealed a band around 1.5 kb. When rabbit enzyme is compared to other species, an over all homology of 70-80% was observed at the nucleotide level. High homology in the amino acid sequence and composition is also apparent between rabbit and other species like dog (65%), pig (76%) and rat (63%). Highest homology is found to be around active-site serine. The regions of homology with other species may help to define sites of interaction of lipase with co-lipase.

Amino Acid Sequence↗

Role of cysteine in regulating morphogenesis and mitochondrial activity in the dimorphic fungus Histoplasma capsulatum.

Three stages can be distinguished in the temperature-induced mycelial-to-yeast phase transition of Histoplasma capsulatum. Stage one is characterized by a progressive decrease in the respiration rate and in the intracellular concentrations of cysteine and other amino acids. By stage two, respiration has ceased completely and free cysteine has fallen to low levels. Exogenous cysteine is required during the second stage for activation of mitochondrial respiration (stage three) and completion of the morphological transition. Mitochondria isolated from cells in the second stage show no respiration with NADH, succinate, or other substrates unless they are first incubated with cysteine. In addition, a novel, cytosolic cysteine oxidase appears during the latter part of the second stage. In stage three, the respiration rate rises, intracellular concentrations of free cysteine and other amino acids increase to levels characteristic of yeast, and the morphological transition is completed. The results support the idea that alterations in cysteine metabolism play a key role in this differentiation process.

Cell Differentiation↗