22 results on '"RNA, Transfer biosynthesis"'
Search Results
2. [The origin of inosine in yeast tRNA].
3. [A study of the biologic properties of yeast transfer ribonucleic acids containing incorporated 5-fluorouracil].
4. [A study of the incorporation of 5-fluorouracil into transfer and ribosomal ribonucleic acids of yeast].
5. [Melting points of DNA-RNA molecular hybrids].
6. [Specificity in the formation of leucyl-sRNA by organs from the same species].
7. [Interaction between tryptophanyl-sRNA synthetase and tryptophan or certain analogues of tryptophan].
8. [Role of ribosomes in protein synthesis].
9. [Comparative effect of proflavine on the formation of leucyl-ribonucleic acid in "Escherichia coli" systems and rabbit reticulocytes].
10. [Cellular RNA of low molecular weight].
11. [Metabolism of ribonucleic acids in Escherichia coli deficient in phosphate].
12. [RNA extracted from endoplasmic reticulum of chick embryo cells].
13. [Characteristics of RNA synthesized in the presence of actinomycin D in mouse plasmacytoma].
14. [Study of the action of beta-indolylacetic acid on the RNA metabolism of oat coleoptile sections].
15. [Action of cortisone on the synthesis of nucleic acids in rat liver].
16. [Biochemical studies on oogenesis. I. RNA synthesis and accumulation during oogenesis of the South African toad Xenopus laevis].
17. [Increase in organizer cistrons for 5S RNA and transfer RNA in small Xenopus laevis oocytes].
18. [Synthesis of stable RNA by a stringent Escherichia coli strain during specific amino acid deprivation].
19. [Functional adaptation of t-RNA to the protein biosynthesis in a highly differentiated cellular system. IV. Evolution of the t-RNA in the silk gland of Bombyx mori L. during the last larval age].
20. [Modification of the rate of synthesis of plant ribonucleic acids by phenylacetic acid derivatives. Influence of penicillin nucleus].
21. [tRNA's from yeast having incorporated 5-fluorouracil arising from in vivo deamination of 5-fluorocytosine].
22. [Effect of proflavine on the rate of enymatic synthesis of isoleucyl-ribonucleic acid in "Escherichia coli"].
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