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Y M Bhatnagar

Publications and source records attributed to Y M Bhatnagar.

30 records · Page 2Linked to original sources

Germ cell nucleosomes contain remodeled core protein complex.

Electrophoretic analysis of the nucleosomal histones from MN1 and MN2 subpopulations of the seminiferous tubules in gels containing either 6.25 or 2.5 M urea revealed the presence of testis specific histone H2S, H1 and protein 'A' in addition to the somatic histones in the core protein complex. Size analysis indicated the presence of a 150-160 bp DNA segment in the MNI subpopulation, whereas, an approx 180 bp DNA fragment was present in the MN2 subpopulation of both liver and tubule nucleosomes. These data suggest an extensive remodeling of the nucleosomal core protein complex during mammalian spermatogenesis.

Animals↗

Preparative electrophoresis of histones in solubilizable polyacrylamide gels.

Histones from the mouse testis have been fractionated on 17% acrylamide gels containing 0.19% Bis-acrylylcystamine (BAC), 25 M urea and 0.4% Lubrol-WX at pH 2.7. Polyacrylamide gels which contain BAC, a cross-linking agent with disulfide bonds, can be solubilized in the presence of 2-mercaptoethanol, at pH 8.3. Polymerization is carried out at 40 degrees C and in the presence of 6.5--7.5% tetramethylethylenediamine (TEMED) at pH 8.3. Gels containing high acrylamide concentration (greater than 15%) are not soluble if polymerized at lower pH or TEMED concentrations. Following electrophoresis, the gels are stained with Coomassie brilliant blue R for the visualization of protein bands. The stained protein bands are excised and adjusted to pH 8.3 prior to their solubilization. The histones are recovered by ion-exchange chromatography and are free of soluble gel components and dye. Two variants of histone H2B (H2B . 1 and H2B . 2) have been isolated at approx. 95% purity using this single purification step.

Amino Acids↗

Bacterial peptides with C-terminal similarities to bovine neurotensin.

Using radioimmunoassay, peptides resembling the C-terminal region of bovine neurotensin (NT) have been demonstrated in acid/acetone extracts of Rhodopseudomonas palustris, Escherichia coli, and Caulaobacter crescentus. The NT-like bacterial components were shown to behave as peptides of small molecular weight (less than 2000) which were stable to acid and heat but labile to proteolytic digestion. In the radioimmunoassay toward NT they displayed dose-response curves parallel to standard and gave results indicating a competitive type of interaction with NT binding sites on antibody. The bacterial extracts did not register in a control radioimmunoassay toward rat luteinizing hormone. Some of the NT-like immunoreactivity could also be bound to an retrieved from anti-NT-antibody-Sepharose preparations. Since the C-terminal region of NT constitutes its biologically active core, these results suggest that presence of biologically important congeners of NT in bacteria.

Animals↗

Immunochemical characterization of neurotensin-like peptides in chicken.

Using radioimmunoassay and 3 region specific antisera toward bovine neurotensin (NT), the NT-like peptides in chicken have been shown to differ from NT but to strongly resemble its COOH-terminal region. Three substances were identified, one of which resembled NT biologically and appeared to share 7 or 8 of its COOH-terminal residues. The two other peptides were smaller than NT but seemed to possess 4-6 residue homologies with it. Tissue distribution studies indicated that the chicken pancreas and thymus had unusually high levels of this material (greater than 200 fold than in rat) and that the 3 substances were distributed differently in tissues. Chromatographic studies showed that the peptides obtained form brain, intestine, thymus, and pancreas were similar. These results, demonstrating evolutionary conservation of the COOH-terminal region of NT, are in keeping with the known importance of this region for biological activity. These finding also suggest the exstence of an NT-family of peptides serving multiple biological roles.

Amino Acid Sequence↗

Isolation, structure and biologic activity of chicken intestinal neurotensin.

Using a radioimmunoassay towards bovine neurotensin(NT), chicken NT has been purified to homogeneity from extracts of intestine and its amino acid sequence determined to be: less than Glu-Leu-His-Val-Asn-Lys-Ala-Arg-Arg-Pro-Tyr-Ile-Leu-OH. The molecule is identical to the bovine peptide except for the 3 amino acid substitutions located in its NH2-terminal half and italicized above (His/Tyr: Val/Glu; Ala/Pro). The structure for chicken NT is consistent with earlier immunochemical studies which indicated a COOH-terminal homology with bovine NT [1]. The peptide isolated was shown to be near equipotent with bovine NT in its ability to induce hypotension, hyperglycemia, and cyanosis in the anesthesized rat, underscoring the importance of the COOH-terminal residues in NT for biological activity.

Amino Acid Sequence↗

Synthesis and soluble pools of ribosomal proteins in Rhodopseudomonas palustris.

The specific antibodies prepared against two purified ribosomal proteins (19 and 24) and total 66-S ribosomal proteins have been utilized to measure free ribosomal proteins in Rhodopseudomonas palustris. The free ribosomal protein pool (66 S) amounts to 1-2% of the total soluble proteins of R. palustris. In addition, the size of free ribosomal protein pool (66 S) is calculated to be approx. 7% of the total ribosomal protein on the mature 66-S ribosomes from the pulse-labelling data. A study of the pool size indicates that ribosomal proteins are synthesized at a constant rate during exponential growth. However, during abnormal conditions such as antibiotic treatment, individual ribosomal proteins behave in a manner distinct from the average behavior of total 66-S ribosomal proteins. The co-ordination in the biosynthesis of free ribosomal proteins is no longer apparent during dhloramphenicol treatment. Measurements on the free ribosomal protein pools following physiological stress treatment indicate that during the recovery period, rate of ribosome assembly is greater than the rate of ribosomal protein synthesis.

Kinetics↗

Spermatogenic cells of the prepuberal mouse. Isolation and morphological characterization.

A procedure is described which permits the isolation from the prepuberal mouse testis of highly purified populations of primitive type A spermatogonia, type A spermatogonia, type B spermatogonia, preleptotene primary spermatocytes, leptotene and zygotene primary spermatocytes, pachytene primary spermatocytes and Sertoli cells. The successful isolation of these prepuberal cell types was accomplished by: (a) defining distinctive morphological characteristics of the cells, (b) determining the temporal appearance of spermatogenic cells during prepuberal development, (c) isolating purified seminiferous cords, after dissociation of the testis with collagenase, (d) separating the trypsin-dispersed seminiferous cells by sedimentation velocity at unit gravity, and (e) assessing the identity and purity of the isolated cell types by microscopy. The seminiferous epithelium from day 6 animals contains only primitive type A spermatogonia and Sertoli cells. Type A and type B spermatogonia are present by day 8. At day 10, meiotic prophase is initiated, with the germ cells reaching the early and late pachytene stages by 14 and 18, respectively. Secondary spermatocytes and haploid spermatids appear throughout this developmental period. The purity and optimum day for the recovery of specific cell types are as follows: day 6, Sertoli cells (purity>99 percent) and primitive type A spermatogonia (90 percent); day 8, type A spermatogonia (91 percent) and type B spermatogonia (76 percent); day 18, preleptotene spermatocytes (93 percent), leptotene/zygotene spermatocytes (52 percent), and pachytene spermatocytes (89 percent), leptotene/zygotene spermatocytes (52 percent), and pachytene spermatocytes (89 percent).

Age Factors↗

Ribosomal proteins of Rhodopseudomonas palustris.

Sodium dodecyl sulfate-polyacrylamide gel electrophoresis of ribosomal proteins of Rhodopseudomonas palustris revealed that the 29S subunit lacked a high-molecular-weight protein. It is suggested that a high-molecular-weight protein may function in protecting ribosomal ribonucleic acid from ribonuclease degradation.

Anaerobiosis↗