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Biomedical subjects

S Omata

Publications and source records attributed to S Omata.

At least 73 records · Page 4Linked to original sources

In vivo and in vitro effects of methylmercury on the activities of aminoacyl-tRNA synthetases in rat brain.

The activities of six aminoacyl-tRNA synthetase species were determined using enzyme preparations partially purified from the brains of control and methylmercury (MeHg)-treated rats. The activities of Asp-, Leu- and Tyr-tRNA synthetases were significantly reduced in the brains of MeHg-intoxicated rats, whereas those of Lys- and Met-tRNA synthetases remained unchanged. In contrast, the activity of His-tRNA synthetase was significantly increased in the symptomatic phase of MeHg intoxication. The activities of these six aminoacyl-tRNA synthetases in the control brains were affected to different extents on the direct addition of MeHg to the assay system in vitro. No positive correlation was observed between the in vivo and in vitro effects of MeHg on the enzyme activities. These results indicate that the aminoacylation of tRNA is one of the actions of MeHg, which leads to inhibition of protein synthesis, and it is suggested that the syntheses of cellular proteins may be modified in different ways by MeHg, depending on their amino acid compositions.

Amino Acyl-tRNA Synthetases↗

Decrease in protein phosphorylation in central and peripheral nervous tissues of methylmercury-treated rat.

The protein phosphorylation in extracts of nervous tissues of rats acutely exposed to methylmercury chloride (seven daily injections of 10 mg methylmercury chloride/kg body weight) was examined. In the brain, the phosphorylating activity was dependent on cAMP and Mg2+. The effect of methylmercury on the phosphorylation of brain proteins, including tubulin and MAP-2, was hardly discernible. In peripheral nervous tissues such as the dorsal and ventral roots, sciatic nerves and dorsal root ganglia, the phosphorylating activity was dependent on Ca2+, and the maximal activity was obtained when the tissues were extracted in the presence of 1% Triton X-100. SDS-Polyacrylamide gel electrophoresis revealed that the major phosphorylated proteins in the peripheral tissues were myelin proteins. The effects of methylmercury were not uniform regarding protein species and tissues. The most marked changes were observed in sciatic nerves, in which phosphorylation of the 33 kDa, 28 kDa, 19 kDa, 18 kDa and 15 kDa proteins was significantly decreased in the symptomatic phase of intoxication.

Animals↗

Species difference between rat and hamster in tissue accumulation of mercury after administration of methylmercury.

The accumulation of mercury in tissues of the rat and hamster was determined after the administration of a single dose of 203Hg-methylmercury chloride (10 mg/kg body weight). On day 2, the mercury contents of hamster tissues were higher than those of rat tissues, except for red blood cells, in which the mercury content was about 6-fold higher in the rat than in the hamster. After that time, the mercury content of hamster tissues decreased rather steeply and on day 16 it had reached 14-25% in nervous tissues and 7-15% in other tissues, of the levels on day 2. In the rat, on the other hand, the mercury content of nervous tissues on day 16 was higher than that on day 2 (106-220%), except for dorsal roots and dorsal root ganglia, which showed slight decreases (75-94% of the levels on day 2). In non-neural tissues, the decreases up to day 16 were also small (71-92% of the levels on day 2). Thus, both the uptake and elimination of mercury seem to be more rapid in the tissues of hamster compared with those of the rat. Similar trends of mercury accumulation and elimination were observed when animals received multiple injections of methylmercury that induced acute methylmercury intoxication. Significant biotransformation of the injected methylmercury to inorganic mercury was detected in the liver, kidney and spleen of both animal species.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Alteration in RNA synthesis in the dorsal root ganglia of methylmercury-treated rats.

The effect of methylmercury in vivo on the incorporation of 3H-uridine in vitro into RNA of dorsal root ganglia of the rat was examined. Modified methods for the incubation of the tissue and extraction of RNA were applied to adequately determine the rate of RNA synthesis. Methylmercury significantly decreased the RNA content and RNA synthetic activity only in the symptomatic period, while uptake of the precursor into the acid-soluble pool remained unchanged. These results indicate that the previously reported inhibition of protein synthesis in dorsal root ganglia at an early phase of methylmercury intoxication was not due to impairment RNA synthesis in this tissue.

Animals↗

Properties of rat liver signal peptidase reconstituted into liposomes.

EDTA/KCl- or pyrophosphate-treated rough microsomes of rat liver clearly showed the co-translational cleavage of pre-human placental lactogen and translocation of the product into membrane vesicles. The signal peptidase fraction was isolated by chromatography on Sephacryl S-300 of deoxycholate-treated membranes and reconstituted into liposomes by dialysis or by the Biobeads SM-2 method. Assay of the signal peptidase activity was performed with pre-human placental lactogen synthesized by the reticulocyte lysate system programmed with human placental lactogen mRNA. The signal peptidase reconstituted into liposomes showed stable activity over the temperature range of 0 to 45 degrees C; in contrast, the detergent-solubilized signal peptidase of dog pancreatic membranes was completely inactivated at the unusually low temperature of 37 degrees C. It was shown that this inactivation was due to the presence of detergent. Signal peptidase from rat liver was insensitive to a variety of protease inhibitors, like the enzyme from dog pancreas, but differed from the latter in being inhibited by chymostatin and TPCK.

Animals↗

Interaction of secretory protein precursors with phospholipids in liposomes.

The precursors of secretory proteins were synthesized in a reticulocyte lysate system programmed with rat serum albumin or human placental lactogen mRNA and their interaction with phospholipids in liposomes was studied. The precursor proteins could bind to acidic phospholipids that have an exposed phosphate such as dicetyl phosphate and phosphatidic acid or a phosphate that is covered by a small moiety such as phosphatidylglycerol. The binding of precursor proteins was dependent on the mol% of acidic phospholipids in lecithin-liposomes, increased with elevation of temperature in the range of 0 to 45 degrees C, and was not inhibited by the addition of a large excess of mature proteins. Mature proteins or proalbumin showed no significant binding to the liposomes containing acidic phospholipids. About 15% of the acid-precipitable radioactivity bound to the liposomes was resistant to protease digestion. This radioactivity was shown to correspond to methionine-containing peptides with molecular weights of 2,500 to 3,500. These results indicate that the post-translational insertion of a small part of the precursor proteins into the membrane did occur with the present model system, but the post-translational transfer of precursor proteins across the membrane did not.

Animals↗

In vivo effect of methylmercury on protein synthesis in peripheral nervous tissues of the rat.

The in vivo rates of protein synthesis in the peripheral nervous tissues of methylmercury-treated rats (10 mg/kg/day, for 7 days) have been estimated with improved methods by the injection of a large amount of [1-14C]valine of low specific activity. Protein synthesis activity in the dorsal root ganglia was inhibited to the extent of 60% of the control as early as day 5 and this continued to the symptomatic period (day 15) on which crossing of hind limbs, a typical sign of organomercurial poisoning, was observed in the animals. The sciatic nerves and dorsal roots increased protein synthesis by 56% at the symptomatic period. These increases in protein synthesis may be due to the stimulation of reactivity of Schwann's cells. On the contrary, the protein synthesis in the ventral roots showed a gradual decrease as the intoxication proceeded and decreased to 73% of the control at the symptomatic period, being similar to the case of brain. The double-labeling studies with sodium dodecyl sulfate/polyacrylamide gel electrophoresis exhibited that methylmercury inhibited the synthesis of the dorsal root ganglion proteins non-uniformly in various apparent molecular sizes, especially on day 10.

Animals↗

Reconstitution into liposomes of membrane proteins involved in ribosome binding on rough endoplasmic reticulum. Ribosome-binding capacity.

A membrane protein fraction having a high affinity for polyribosomes was isolated from microsomal membranes of rat liver and was incorporated into liposomes made from microsomal lipids to evaluate the polyribosome-binding capacity of the reconstituted liposomes, with the following results. (1) The polyribosome binding to the reconstituted liposomes depended on the amounts of polyribosomes added to the binding mixture. (2) Liposomes made from lipids alone did not bind any polyribosomes. (3) The polyribosome-binding capacity of the reconstituted liposomes was very sensitive to proteolytic enzyme and strongly inhibited by addition of 0.1 mM-aurintricarboxylic acid or by increasing KCl concentration. These results suggest that the binding mechanism of polyribosomes to the reconstituted liposomes is much like that for rough microsomal membrane stripped of endogenous polyribosomes.

Animals↗

Stimulation of protein and RNA synthesis by methylmercury chloride in the liver of intact and adrenalectomized rats.

(1) A single injection of methylmercury chloride in the rat (10-50 mg/kg) increased both in vivo and in vitro rates of 14C-leucine incorporation into the protein of the post-mitochondrial supernatant fraction of the liver. In contrast, no stimulation of protein synthesis was observed in the brain of the methylmercury-treated rats. (2) Methylmercury administration also stimulated RNA polymerase activities in isolated hepatic nuclei, stimulation of Mg-dependent activity being higher than that of Mn-dependent activity. (3) In experiments with adrenalectomized rats, it was found that the stimulatory effect of methylmercury on protein and RNA synthesis in the liver was mediated partly through the adrenal gland. (4) Analysis of serum by starch-block electrophoresis revealed that synthesis of all serum proteins, including albumin and alpha-gamma globulin fractions, was stimulated by methylmercury treatment. (5) These results suggest that the observed effects of methylmercury on the liver depend on mechanisms other than enhancement of the synthesis of acute-phase proteins.

Adrenalectomy↗

Isolation and characterization of membrane proteins responsible for attachment of polyribosomes to rough microsomal fraction of rat liver.

A protein fraction which has a high affinity for polyribosomes was isolated from rough microsomal membranes of rat liver. The mode of polyribosome binding to this fraction (R-fraction) was studied by using CsCl equilibrium centrifugation and compared with that for stripped rough microsomal membranes. The following were found. (1) The polyribosome-binding cpacity of the R-fraction was heat-labile and sensitive to trypsin, and was suppressed by increasing KCl concentration and addition of 0.1 mM-aurintricarboxylic acid. (2) Of the four subfractions obtained by gel filtration of the R-fraction on a Sephadex G-200, only the R1-fraction, eluted at the void volume, showed a high affinity for polyribosomes. The polyribosome-binding capacity of the R1-fraction decreased with time on storage at 4 degrees C. (3) The R1-fraction contained three major proteins with mol. wts. 108,000, 99,000 and 65,000.

Animals↗