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Biomedical subjects

S Acharya

Publications and source records attributed to S Acharya.

At least 73 records · Page 4Linked to original sources

Production of UV-induced frameshift mutations in vitro by DNA polymerases deficient in 3'-->5' exonuclease activity.

In order to study the conversion of UV lesions into frameshift and base substitution mutations, M13mp2 phage DNA was altered by the addition of extra pyrimidines, or by construction of a nonsense codon preceded by a run of pyrimidines within the beta-galactosidase complementing region. The normal sequence 5' GTC GTT TTA CAA 3' was changed to GTC GTT T TTA CAA (MIDT) or GTC GTT C TTA CAA (MIDC) to study frameshifts and to GTC GTT CTT TAA (OCHRE) to study reversion of the ochre (TAA) codon. Escherichia coli pol I Kf and T7 DNA polymerase mutant enzymes devoid of 3'-->5' exonuclease activity produced UV-induced revertants at higher frequency than did their exonuclease proficient counterparts. Removal of cyclobutane dimers with photolyase before in vitro synthesis did not greatly affect mutant frequency although such treatment led to significantly increased DNA synthesis by the wild-type T7 DNA polymerase on UV-irradiated substrate. Reversions of the in frame ochre sequence GTT CTT TAA produced by the delta 28 T7 DNA polymerase were mainly by base substitution in the TAA codon. About half of the E. coli Kf exo- enzyme ochre revertants had a TTA deletion. Five mutant T7 DNA polymerases with varying exonuclease activity gave revertant frequencies that correlated better with published values of enzyme velocity than with exonuclease activity or with measured bypass synthesis. Our data indicate that loss of proofreading activity increases the frequency of UV-induced frameshifts, but lack of such activity is not sufficient for their production. We suggest that frameshifts occur more frequently when nucleotide addition opposite the lesion is slow. The same lesion can give rise to a different spectrum of mutations depending on the polymerase.

Bacteriophage M13↗

Footwear dermatitis.

We conducted a study to determine the prevalence and clinical patterns of footwear dermatitis, patch testing 50 patients with suspected footwear dermatitis and 30 controls with 22 allergens of a shoe series (Chemotechnique Diagnostics AB, Malmö, Sweden). The overall prevalence among contact dermatitis cases was 11.7%. The dorsa of the feet and toes were the commonest sites involved. 70% of patients showed sensitivity to footwear allergen(s), as opposed to 6.67% of controls. Potassium dichromate and colophony were the commonest sensitizers. Other sensitizers were the rubber accelerators 2-mercaptobenzothiazole (MBT) and diphenylguanidine (DPG) and a dye p-aminoazobenzene. Of the 23 patients patch tested with pieces or scrapings of footwear, only 3 showed positive reactions. We recommend that there should be primary and secondary footwear screening series to detect the responsible allergens, with the ultimate objective of providing correct nonallergenic footwear for our patients, with the help of manufacturers and research institutes.

Adolescent↗

GSTM1 null polymorphism at the glutathione S-transferase M1 locus: phenotype and genotype studies in patients with primary biliary cirrhosis.

Studies were carried out to test the hypothesis that the GSTM1 null phenotype at the mu (mu) class glutathione S-transferase 1 locus is associated with an increased predisposition to primary biliary cirrhosis. Starch gel electrophoresis was used to compare the prevalence of GSTM1 null phenotype 0 in patients with end stage primary biliary cirrhosis and a group of controls without evidence of liver disease. The prevalence of GSTM1 null phenotype in the primary biliary cirrhosis and control groups was similar; 39% and 45% respectively. In the primary biliary cirrhosis group all subjects were of the common GSTM1 0, GSTM1 A, GSTM1 B or GSTM1 A, B phenotypes while in the controls, one subject showed an isoform with an anodal mobility compatible with it being a product of the putative GSTM1*3 allele. As the GSTM1 phenotype might be changed by the disease process, the polymerase chain reaction was used to amplify the exon 4-exon 5 region of GSTM1 and show that in 13 control subjects and 11 patients with primary biliary cirrhosis, GSTM1 positive and negative genotypes were associated with corresponding GSTM1 expressing and non-expressing phenotypes respectively. The control subject with GSTM1 3 phenotype showed a positive genotype.

Base Sequence↗

Exercise-induced cholesterol depletion and Na+,K(+)-ATPase activities in human red cell membrane.

Red cell membranes were isolated from blood samples obtained from athletes during exhaustive exercise on a bicycle ergometer and during the subsequent recovery period of 60 min. Plasma lactate levels were also determined. During exercise, cell membranes were progressively depleted of cholesterol and, at exhaustion, membrane cholesterol was less than 80% of the initial level. A parallel decline in Na+,K(+)-ATPase was also noted, while phospholipid reduction was around 5%. During recovery, the erythrocyte membrane cholesterol and Na+,K(+)-ATPase increased, but at a slow rate and were inversely proportional to plasma lactate content.

Adult↗

Influences of norepinephrine, and adrenergic agonists and antagonists on gonadotropin secretion from dispersed pituitary cells of goldfish, Carassius auratus.

Static incubations of dispersed goldfish pituitary cells with 1-100 nM norepinephrine (NE) stimulated gonadotropin (GTH) release. Additions of the alpha-agonist phenylephrine, and the alpha 1-agonist 6-fluoronorepinephrine, but not the alpha 2-agonist clonidine, nor the beta-agonist isoproterenol, also enhanced GTH secretion. The GTH responses to 1 nM NE was significantly inhibited by coincubations with 1 microM of the alpha-antagonist phentolamine, the alpha 1-antagonists prazosine and benoxathian, but not the alpha 2-antagonist yohimbine nor the beta-antagonist propranolol. The GTH responses to NE and phenylephrine were also additive to salmon GTH-releasing hormone (sGnRH)-induced GTH release. These results suggests that NE directly stimulates GTH secretion independent of sGnRH receptors via alpha 1-like adrenergic receptors.

Adrenergic alpha-Agonists↗

Thermodynamic analysis of ligand binding to winged bean (Psophocarpus tetragonolobus) acidic agglutinin reveals its specificity for terminally monofucosylated H-reactive sugars.

The sugar-specific binding of N-dansylgalactosamine to WBA II (n = 2; Ka = 5.6 x 10(3) M-1; delta H = -21 kJ.mol-1; delta S = -21.3 J.mol-1.K-1) was utilized in substitution titrations for evaluating the association constants for the interaction of sugars with the lectin. An axial hydroxyl at C-4 and equatorial hydroxyls at C-3 and C-6 as in D-galacto configuration are crucial for binding. Both axial and equatorial hydroxyls are tolerated at C-2. Conformationally akin disaccharides such as lactose, N-acetyllactosamine, Gal beta 1-3GlcNAc, and Gal beta 1-3GalNAc show similar affinities. 2'-Fucosyllactose and H-disaccharide display 146 and 13 times stronger affinity over lactose and galactose, yet fucose by itself is devoid of activity. An interesting feature, noted for the first time, in protein-sugar interactions is the positive entropy change for the binding of 2'-fucosyllactose, suggesting that nonpolar interactions play an important role in stabilization of the lectin-sugar complex. 3-Fucosyllactose, lactodifucotetraose, lacto-N-fucopentaose II and III are inactive, whereas lacto-N-fucopentaose I has 14-fold lower affinity as compared with 2'-fucosyllactose. Conformational analysis indicates that the substitution at subterminal glucose or GlcNAc by L-fucose in either alpha 1-3 or alpha 1-4 linkage leads to its projection so as to sterically hinder the access of 3'-fucosyllactose, lactodifucotetraose, and lacto-N-fucopentaose II and III to the binding site of winged bean agglutinin II. Similarly the projection of alpha 1-3 linked Gal/GalNAc also leads to steric hindrance and hence prevents the binding of blood group A and B reactive sugars. Considering its unique specificity winged bean agglutinin II should be useful in the isolation and characterization of terminally monofucosylated H-reactive oligosaccharides from those that are difucosylated or internally fucosylated.

Calorimetry↗

Effects of dextrose, verapamil and magnesium during hypoxia in myocardial tissue.

We studied the effects of superfusion of canine heart muscle tissue with a solution that mimicks hypoxia, acidosis and hyperkalemia (altered Tyrode's solution). Contracture (rise in resting tension) develops much sooner (5.2 +/- 0.8 vs. 30-40 min in 5 mM dextrose) in the absence of dextrose. High dextrose (55 mM) stabilizes the rise in tonic tension and protects against the action potential shortening during such superfusion. Presence of verapamil (1-1.5 microM) during altered Tyrode's superfusion considerably lessens the magnitude of the increase in tonic tension (31.7 +/- 8.6 vs. 129.5 +/- 32.6 mg in the control). Presence of high magnesium (5 mM) during altered Tyrode's superfusion also offers some protection against tonic tension increase (12.6 +/- 3.6 mg rise in tonic tension vs. 129.5 +/- 3.2 mg in the control), action potential shortening, and amplitude decrease. These results suggest that (a) magnesium and verapamil both have significant effects on the cellular calcium uptake, and (b) anaerobic metabolism utilizing either glycogen or exogenous glucose is capable of preventing contracture during ischemia.

Action Potentials↗

Effects of hypoxia with mild acidosis and reoxygenation on slow response action potentials in canine myocardial tissues.

We studied slow response action potentials (SRAP) in canine ventricular muscle tissue during hypoxia (and mild acidosis) and reoxygenation. Slow responses were initiated by perfusing the tissue with a solution containing 27 mM KCl and 10(-6) M norepinephrine. The tissue was stimulated at 0.5 Hz, 20V and 4ms (duration of the pulse). Microelectrode techniques were used to record action potential and mechanical activity was recorded with a force displacement transducer. Hypoxia and mild acidosis progressively diminished the amplitude and duration of these SRAPs, whereas reperfusion/reoxygenation progressively increased their amplitude even more than that in the control (prehypoxic value). Action potential duration (APD) increased (at all levels) during reperfusion compared to that in hypoxia and mild acidosis but APD remained shorter than the control (prehypoxic level). The effects of hypoxia (and mild acidosis) and subsequent reoxygenation seem similar to that of elevating the extracellular calcium (increased inward current). From these experiments one cannot, however, distinguish the effects of hypoxia on inward current from those on the outward currents.

Acidosis↗

Molecular cloning, sequencing, and mapping of EGR2, a human early growth response gene encoding a protein with "zinc-binding finger" structure.

Early growth response gene-1 (Egr-1) is a mouse gene displaying fos-like induction kinetics in diverse cell types following mitogenic stimulation. Egr-1 encodes a protein with "zinc-binding finger" structure. Zinc fingers are a protein structural motif that serve as DNA-binding domains in several transcriptional regulatory proteins. Using low-stringency hybridization with an Egr-1 cDNA probe, we identified a distinct human cDNA (designated EGR2 for early growth response gene-2), which is coregulated with EGR1 by fibroblast and lymphocyte mitogens; however, several stimuli that induce Egr-1 mRNA in PC12 (rat pheochromocytoma) cells do not induce Egr-2 mRNA. The cDNA sequence predicts a protein of 406 amino acids, including three tandem zinc fingers of the Cys2-His2 class. Strikingly, the deduced amino acid sequences of human EGR2 and mouse Egr-1 are 92% identical in the zinc finger region but show no similarity elsewhere. EGR2 maps to human chromosome 10 at bands q21-22. Structure-function analysis of EGR2 and EGR1 proteins should provide insight into the mechanisms linking signal transduction and transcriptional regulation of gene expression.

Amino Acid Sequence↗