A simple screening test for reduced glutathione in filter paper spots of blood.
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Biomedical subjects
Publications and source records attributed to M D Garrick.
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Tosyl-L-lysyl chloromethyl ketone (TLCK) inhibits protein synthesis in intact cells and lysates. Its presence leads to polyribosome disaggregation. This inhibition is probably at the level of chain initiation because it does not slow poly(U)-dependent elongation of poly(F). This drug activates an inhibitor similar to the heme-controlled repressor in the postribosomal supernatant. High concentrations of ATP and GTP affect inhibitions of translation by the heme-controlled repressor and TLCK in a similar fashion. The latter also interferes with formation of the 40S initiation complex. Its action on translation can be prevented by preliminary incubation with thiols.
Hemoglobin beta-chain synthesis by rabbit erythroid cells was tested for dependence on availability of complementary alpha-chains. Reticulocytes and bone marrow cells were obtained from variant rabbits that have hemoglobin with isoleucine in alpha-chains but not in beta-chains. This characteristic permits the use of L-O-methylthreonine, a specific isoleucine antagonist, to inhibit selectively the synthesis of hemoglobin alpha-chains without directly affecting that of beta-chains. Study of hemoglobin synthesis by bone marrow cells presents two problems that require careful management: (A) the fragility of the globin-synthesizing apparatus and (B) the isolation of globin from the various proteins made by the mixture of nucleated cells. Disruption of synthetic activity was minimized by collecting the bone marrow in autologous plasma then removing fat and connective tissue while the cells were suspended in this medium. Purification involved gel filtration of hemoglobin and globin then CM-cellulose chromatography of globin chains. Absence of radioactive isoleucine in beta-chains demonstrated the efficacy of this scheme in removing isoleucine-containing proteins that otherwise elute with beta-chains on CM-cellulose columns. In reticulocytes, when synthesis of alpha-chains is inhibited by 30%--80%, that of beta-chains is stimulated by 20%--60%, but in marrow cells, incorporation into beta-chains stays at control level when alpha incorporation is inhibited. The data indicate that beta-chain synthesis is independent of the availability of complementary alpha-chains.
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Polyacrylamide gel electrophoresis in urea and Triton X-100 of a hemolysate from human fetal red blood cells produces four major protein bands: alpha, beta, and 2 gamma globin chains. We have verified that the latter two are the G gamma and A gamma globin chains which have respectively glycine or alanine at position 136. After incorporation of either [3H] alanine or [3H] glycine into newly synthesized globin each gamma chain was isolated by preparative electrophoresis. The chains were cleaved with cyanogen bromide at methionines 55 and 133, then subjected to automated sequencing, and the residues from each sequencer turn counted. Glycine incorporation was detected for the third turn (position 136) of the G gamma chain and alanine for the A gamma. Substantial metabolic conversion of [3H] glycine to serine and proline was also noted.
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The amino acid sequence of the major beta-chain, (II)beta, from rat haemoglobins was established with an automated sequencer. Amino acid heterogeneities were found that appear to result from allelic variation at particular residues. We applied several new or unusual techniques in determining the sequence: (1) reaction of the polypeptide with dansylaziridine for detection of cysteine; (2) blockage of the N-terminal residue and the epsilon-amino group of lysine residues with 1-fluoro-2-nitro-4-trimethylammoniobenzene iodide and subsequent identification of the modified lysine phenylthiohydantoin by absorbance at 420nm; (3) identification of histidine phenylthiohydantoin by its blue fluorescence under long-wave u.v. light; (4) cleavage of the chain into two or three fragments and subsequent sequencing without purification [a detailed statement giving the major phenylthiohydantoins assigned at each step for each sequence run before their alignment in individual sequences has been deposited as Supplementary Publication SUP 50084 (10 pages) at the British Library Lending Division, Boston Spa, Wetherby, West Yorkshire LS23 7BQ, U.K., from whom copies can be obtained on the terms indicated in Biochem. J. (1978) 169, 5]; (5) separation of fragments produced by CNBr cleavage by cation-exchange chromatography; (6) peptide sequencing after attachment of the peptide to cytochrome c. The amino acid sequence was confirmed by amino acid compositions of the complete chain, of CNBr fragments 1 and 3, and of 11 purified tryptic peptides.
With puromycin one can recognize when the synthesis of a given protein is dependent on amino acyl tRNA that is present in rate limiting amount. We demonstrate this use of puromycin by its interaction with another inhibitor, L-o-methylthreonine. L-o-methylthreonine lowers the Ile-tRNA concentration in the cell, thereby inhibiting synthesis of proteins containing isoleucine. In certain rabbits, the alpha hemoglobin chain has three isoleucyl residues and the beta chain none. L-o-methylthreonine thus inhibits alpha globin synthesis in intact reticulocytes from these rabbits. When puromycin and L-o-methylthreonine are used together, the two inhibitors synergize in inhibiting alpha globin synthesis. Hence, puromycin is a more effective inhibitor when the Ile-tRNA concentration is lowered. Cycloheximide and sodium fluoride have different modes of action from puromycin. Neither synergizes with L-o-methylthreonine; instead, the interaction is less than additive. We have found that beta chain synthesis in rabbit reticulocytes is more sensitive than alpha to inhibition by puromycin. This difference could reflect either differences in amino acid sequence or tRNA dependent limitations of beta chain elongation. The switch from fetal to adult hemoglobin in humans does not involve changes in limiting amino acyl tRNA because, for cord blood from infants of different developmental ages, the puromycin sensitivity of incorporation into gamma and beta chains remains constant.
Two different clinical syndromes are associated with glutathione synthetase deficiency, one presenting with hemolytic anemia and 5-oxoprolinuria, the other with isolated hemolysis. We have differentiated these disorders on an enzymatic basis. In 5-oxoprolinuria, all cell types examined have grossly deficient enzyme activity and glutathione content. In contrast, in the nonoxoprolinuric variant, erythrocytes have decreased enzyme activity and glutathione content, whereas nucleated cells maintain substantial levels of both. The enzyme in this disorder is unstable in vitro and has shortened survival in intact erythrocytes. Nucleated cells appear able to maintain sufficient enzyme activity and concentrations of glutathione to suppress overproduction of 5-oxoproline.
Because small peptides are lost into the organic solvents used, it is virtually impossible to obtain the complete amino acid sequence of a small peptide using only an automated peptide sequencer of the spinning cup type. To overcome this problem we have extended peptides at the carboxy terminus by attachment to equine cytochrome c by a water soluble carbodiimide, relying on the acetylated N-terminus of the cytochrome to minimize its direct contribution to recovery of PTH-amino acids. The Model Peptide H-Leu-Trp-Met-Arg-phe-Ala-OH was used for most experiments. After reaction of 3H-peptide with cytochrome c, about one-third of the tritium counts migrated with cytochrome c during gel filtration. After attachment, the amino acid sequence of the hexapeptide was readily determined with a single cleavage Quadrol program in a Beckman 890B sequencer, whereas only the N-terminal residue was recovered without attachment. The repetitive yield after attachment was 95-96%, with 21-27+ overlap and an initial yield of 18-20%. Sequence data with other peptides illustrate applications and present limitations of our approach.
We have examined the relationship between alpha and beta globin chain syntheses by utilizing the distribution of isoleucyl residues in rabbit hemoglobin. The alpha globin chain contains three isoleucyl residues while the beta chain of certain rabbits contains no isoleucine. O-Methyl-L-threonine, an isoleucine isostere, inhibits incorporation of radiolabeled amino acids into alpha chains in rabbit reticulocytes. When alpha chain synthesis is inhibited by 50-85%, beta synthesis is stimulated by 15-50%. The excess labeled beta chains are not distinguishable from authentic beta chains by any of the following criteria: (a) carboxymethyl cellulose chromatography in sodium phosphate-urea buffers, (b) electrophoresis on polyacrylamide gels containing sodium dodecyl sulfate, and (c) electrophoresis of methionine-containing tryptic peptides. The stimulation of beta synthesis continues after the pool of excess alpha chains has been exhausted by preincubation with O-methyl-L-threonine. The stimulation does not occur, however, when 1 mM 2-mercaptoethanol is added to the incubation medium or when the cells are excessively diluted in the incubation mixture. The rates of beta chain initiation and elongation during stimulation have been compared to the rates during normal synthesis. Although both rates are increased, the rate of elongation increases more than initiation, suggesting that initiation is the rate-limiting step in increased beta chain production. The stimulation of beta synthesis when alpha synthesis is inhibited is interpreted as resulting from relief of competition between alpha and beta mRNAs for limiting components of the protein synthetic apparatus.
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The beta chain of rabbit (Oryctolagus caniculus) hemoglobin has previously been reported to contain a single residue of isoleucine at beta(112). We have detected other rabbits with either zero isoleucyl residues or half a residue per beta chain. This character is polymorphic and inherited as a simple mendelian autosomal codominant.-Normally the modal number of ribosomes per polyribosome is 4 to 6 in reticulocyte lysates; but incubation of rabbit reticulocytes prior to lysis with L-o-methylthreonine (OMT), an isostere of isoleucine, leads to a bimodal distribution in lysates with 2-3 and 8-12 ribosomes as modes. This alteration has been attributed to ribosomal traffic jams caused by starvation for ile-tRNA at mRNA codons corresponding to the locations of isoleucyl residues at positions alpha(10), alpha(17), alpha(55) and beta(112). We have confirmed this interpretation by incubating OMT with reticulocytes from rabbits with integral, half integral and nil values for isoleucyl residues per beta chain to show that formation of the larger clusters of polyribosomes requires that beta(112) = ile.
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