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M Yeh

Publications and source records attributed to M Yeh.

81 records · Page 5Linked to original sources

Glutamic dehydrogenase activity in rat heart: demonstration of two forms of enzyme activity.

Glutamic dehydrogenase (GDH) activity in rat heart was found to be 2.1 U/g of heart (wet wt). The mitochondrial glutamic dehydrogenase activity accounted for only 18% of the total. This percentage of the total activity in heart mitochondria was not altered by nagarse treatment, acetone extraction, sonication in Triton X-100, and extraction with buffer containing a protease inhibitor. The remainder of the activity was present in the cytosol. Cytosolic GDH activity differed from mitochondrial GDH activity by its pH curve, stability to heat, Arrhenius plot, and the effect of different nucleotides. Acetone extraction of the mitochondria resulted in GDH that was stable to heat and had a shallow temperature activation curve resembling cytosolic GDH. Acetone extraction of cytosolic GDH inactivated it. The cytosolic activity was purified 288-fold and the mitochondrial activity 100-fold. Purified cytosolic and mitochondrial GDH enzymes had different monomeric molecular weights on sucrose density gradient centrifugation. Gel filtration of cytosolic and mitochondrial GDH also showed different monomeric molecular weights. We conclude that rat heart GDH exists in two forms with different physical and kinetic characteristics. The majority of GDH activity in rat heart is cytosolic. The mitochondrial enzyme has a lipid-soluble component that can be removed with acetone without destroying its activity.

Animals↗

Reticulocyte cytosol activator protein: its actions upon the beta adrenergic receptor and the N-proteins of adenylate cyclase.

Rat reticulocytes contain a cytosol activator protein (RCAP) that augments catecholamine-sensitive adenylate cyclase activity in reticulocyte membranes. A partially purified preparation of RCAP was obtained by Sephacryl S-200 chromatography and used to elucidate further its mechanism of action. The specific activity of the S-200 fraction to augment isoproterenol responsiveness is increased approximately 1100-fold over the starting material from 1.2 nmoles to 1300 nmoles cyclic AMP formed per milligram of RCAP. The molecular weight is approximately 20,000. In addition to its effects on catecholamine-responsive adenylate cyclase, RCAP is associated with significant increases in basal (0.9 +/- 0.2 to 1.5 +/- 0.4 nmol/mg; p less than 0.02), guanyl-5'-yl imidodiphosphate [Gpp(NH)p]; (3.9 +/- 0.9 to 4.4. +/- 1.1 nmol/mg; p less than 0.005) and fluoride (4.1 +/- 0.6 to 4.8 +/- 0.6 nmol/mg; p less than 0.005) associated activities. RCAP stimulates isoproterenol responsiveness in wild type S49 cell membranes but is inactive in the mutant line, cyc-. RCAP alters the characteristics of agonist binding to the beta-adrenergic receptor of reticulocyte and wild S49 cell membranes, causing a significant increase in the IC50 for isoproterenol. Direct assessment of Ns and Ni components of the adenylate cyclase complex demonstrates that RCAP inhibits cholera toxin-specific ADP-ribosylation of the 42K subunit of Ns and stimulates pertussis toxin-specific ADP ribosylation of the 39K subunit of Ni.

Adenosine Diphosphate↗

Idiotype-anti-idiotype network. II. Activation of silent clones by treatment at birth with idiotypes is associated with the expansion of idiotype-specific helper T cells.

BALB/c mice immunized with bacterial levan (BL) produce a vigorous antibody response that fails to include antibodies expressing the idiotype of the beta 2 leads to 6 fructosan-binding myeloma protein ABPC48 (A48). Treatment of newborn BALB/c mice at 1 d of age with 0.1-10 microgram of either the A48 myeloma protein or monoclonal proteins that share idiotopes with the A48 family, followed by immunization with BL 2-4 wk later, produces an anti-BL response that is dominated by the A48Id. Various degrees of activation of the A48Id BL response were observed by injecting mice with A48 monoclonal protein only up until 3 wk of age. Activation of the A48Id clones by treating with A48 monoclonal protein was ineffective in mice who were older than 4 wk. Elicitation of an A48Id BL response required specific antigenic stimulation with either beta 2 leads to 6 or beta 2 leads to 1 fructosan epitopes, because it does not occur after injection with TNP-Ficoll in spite of the A48 treatment. The expansion of A48Id clones in mice treated at birth with A48 monoclonal protein is associated with an increase in A48Id-specific helper T cells. The binding specificity of these cells was demonstrated by infusing them into nu/nu BALB/c mice and observing that they rendered help that enalbed the animal to mount an anti-TNP response after immunization only with A48-TNP, but not with MOPC384-TNP conjugates. The helper activity of these cells is sensitive to the effects of treatment with anti-Lyt-1.2 antibodies plus complement. A predominantly A48Id BL-specific response can be transferred into lethally irradiated mice by infusing them with purified T and B cells from A48-treated mice. The transfer of this response can be ablated by treating the T cells with anti-Lyt-1.2 antibodies plus complement. These results indicate that A48Id-specific helper cells possess the ability to select the A48Id-bearing B cell precursors for expression, thus exerting a fine-tuning effect on the idiotypic expression of the anti-BL repertoire. We propose that this idiotype-induced idiotype response, which can be, in principal, induced by idiotypes provided by the mother, plays an important role in the expansion of precursors of antibody-forming cells during embryonic as well as postnatal life.

Aging↗

Studies of growth hormone secretion VIII. Effects of alpha,beta-methylene-ATP on prostglandin induced GH release and cyclic AMP accumlation in rat anterior pituitary glands.

Alpha, beta-methylene-ATP, a competitive inhibitor of adenylate cyclase of liver and fat cell membrane preparations, caused a dose related inhibition of PGE1 and PGE2-induced cyclic AMP accumulation in rat anterior pituitary explants. At the same time, this ATP analog potentiated PGE1 and PGE2-promoted growth hormone secretion. The possible functional role of prostaglandins and cyclic nucleotides in the regulation of growth hormone secretion remains to be defined.

Adenosine Triphosphate↗

Studies on growth hormone secretion. VII. Effects of somatostatin on plasma GH, insulin, and glucagon in sheep.

To determine whether synthetic somatostatin originally isolated from sheep hypothalamus can inhibit hormone secretion in the same species, we measured plasma levels of GH, insulin, glucagon, and glucose of normal sheep under a variety of experimental conditions in the presence and absence of somatostatin infusion. An oral dose of 2.5 mg./kg. 3,5-dimethypyrazole increase plasma GH from 10.9 to 376.9 ng. per milliliter, which was suppressed by 50 per cent and 80 per cent with 0.5 and 1 mg. synthetic cyclic somatostatin, respectively. Linear somatostatin (0.5 mg.) was without effect in two animals tested. Propionate (0.5 mmole per kilogram) and arginine (10 gm.) induced a rise in plasma insulin and GH, and glucagon was effectively blocked by cyclic somatostatin (0.5 mg.). Similarly, somatostatin inhibited glucose, and glucagon provoked GH and insulin secretory responses without affecting glucose or FFA levels. Somatostatin had no effect on the disappearance of injected glucagon. Finally, addition of somatostatin to incubation media prevented PGE promoted GH release, and suppressed cyclic AMP accumulation, although to a lesser extent, in sheep anterior pituitary pieces. In view of the large amounts required to suppress stimulated hormone release and the general lack of specificity of somatostatin, it is suggested that this peptide may have a functional role only in the release of hormones of the pituitary, where it could occur in relatively high local concentrations. Its inhibition of extrapituitary hormone secretion may be purely a pharmacologic effect that, nevertheless, suggests an interference with a step common to the secretory process of hormones.

Animals↗

Failure of beta-amyloid protein fragment 25-35 to cause hippocampal damage in the rat.

Considerable excitement has been generated as of late over reports that fragments of the amyloid precursor protein can be neurotoxic both in vivo and in vitro. In this brief report we study the neurotoxicity of the fragment corresponding to amino acids 25-35 of the beta-amyloid protein in the hippocampus in vivo. Under the conditions studied, we do not observe any evidence of consistent, dose-related damage above that seen with vehicle alone.

Amyloid beta-Peptides↗