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Biomedical subjects

J Vaughan

Publications and source records attributed to J Vaughan.

At least 145 records · Page 8Linked to original sources

Bacteriophage T5 transfer RNA. Isolation and characterization of tRNA species and refinement of the tRNA gene map.

Previous studies from this laboratory have provided a high resolution map for 16 tRNA genes located on the continuous heavy DNA strand of bacteriophage T5 DNA (Chen, M.-J., Locker, J., and Weiss, S.B. (1976) J. Biol. Chem. 251, 536-547). All of the T5 tRNA genes were located in three clusters within the DNA C segment, except for tRNAArg, which mapped on the left end of the DNA D segment (Desai, S.M., Hunt, C., Locker, J., and Weiss, S.B. (1978) J. Biol. Chem. 253, 6544-6550). In this report, we present evidence for the presence of eight additional T5 tRNA species, five of which are located in two new loci within the DNA C segment. We also describe a two-dimensional gel electrophoresis system for the separation and isolation of T5 tRNA species from crude infected RNA preparations. The gel electrophoresis system separates tRNA isoacceptors specific for different amino acids; evidence is presented that the isoacceptors for isoleucine, histidine, and serine are coded by different T5 genes.

Base Sequence↗

Hazards of plutonium with special reference to the skeleton.

In the past attempts have been made to deduce plutonium toxicity in man from studies based on animal experimentation. An alternative method is to use the comparative dosimetry of plutonium and radium in man, with results broadly in agreement with maximum permissible levels set by the International Commission of Radiological Protection.

Animals↗

Methionine and formylmethionine specific tRNAs coded by bacteriophage T5.

By RNA-DNA hybridization, as well as chemical and chromatographic analysis, evidence is provided that the bacteriophage T5 codes for the synthesis of two isoacceptor methionine transfer RNA species, tRNA-Met and tRNA-f-Met. Because of the differences in chromatographic properties of T5 phage and host methionine tRNAs, the phage tRNA species are readily distinguishable.

Chromatography↗

The relationship between L-chain synthesis and gamma-globulin production.

The simultaneous administration of labeled human gammaG globulin and L-chains to subjects has allowed examination of the metabolic relationship between a component part and the whole immunoglobulin molecule. Studies were carried out in a series of control subjects and in a group of patients where substandard production of gamma-globulin was anticipated, i.e., patients with the nephrotic syndrome on chronic Imuran therapy and patients with uremia. Full expression of the plasma decay curve was obtained for both substances, that for L-chain requiring only 4-5 days except in uremic subjects and that for gamma-globulin requiring up to 30-40 days. Urinary excretion of inorganic iodide was also quantitated for 20-30 days. Equilibrium of the extravascular, vascular, and urinary radioactivity from the labeled gammaG globulin was usually not seen during this time interval suggesting more than one site of catabolism of the protein. Excess L-chain poduction was about 45% of the total L-chain production and probably in no instance could account for the low gamma-globulin production seen in certain patients with renal disease.

Adult↗

John Dacie.

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Bibliographies as Topic↗