The problem of information transfer from the nucleic acids to proteins.
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[1] Über die Entstehung von Thyroxin durch Jodierung von Eiweiß. (Vorläufige Mitteilung.) , 1936 .
[2] R. V. Rivers,et al. Preparation of Thyroxine from Casein treated with Iodine , 1939, Nature.
[3] Don L. Kooken,et al. Secret and Urgent , 1939 .
[4] A NOTE ON THE CONVERSION OF DIIODOTYROSINE INTO THYROXINE , 1940 .
[5] C. A. Knight. THE NATURE OF SOME OF THE CHEMICAL DIFFERENCES AMONG STRAINS OF TOBACCO MOSAIC VIRUS , 1947 .
[6] Gaw Hz,et al. Comparative properties of purified preparations of two distinctive strains of tobacco mosaic virus obtained from diseased Turkish tobacco and phlox plants. , 1947 .
[7] F. Sanger,et al. The free amino groups of haemoglobins. , 1948, The Biochemical journal.
[8] J. Legge,et al. Hematin compounds and bile pigments , 1949 .
[9] A. J. Martin,et al. A study of the acidic peptides formed on the partial acid hydrolysis of wool. , 1949, The Biochemical journal.
[10] M. R. Stetten. Some aspects of the metabolism of hydroxyproline, studied with the aid of isotopic nitrogen. , 1949, The Journal of biological chemistry.
[11] A. Mirsky,et al. Variable and Constant Components of Chromosomes , 1949, Nature.
[12] T. Caspersson. Cell growth and cell function , 1950 .
[13] The action spectrum of the inhibition of galactozymase production by ultraviolet light. , 1950, Proceedings of the National Academy of Sciences of the United States of America.
[14] C. Hinshelwood,et al. 615. Some considerations on autosynthesis in bacteria , 1950 .
[15] C. Hinshelwood,et al. 614. The ribose nucleic acid content and cell growth of Bact. lactis ærogenes , 1950 .
[16] Tore Hultin,et al. Incorporation in vivo of 15N-labeled glycine into liver fractions of newly hatched chicks , 1950 .
[17] E. Windsor. Alpha-Aminoadipic acid as a constituent of a corn protein. , 1951, The Journal of biological chemistry.
[18] F. Haurowitz. Chemistry and Biology of Proteins , 1951, The Yale Journal of Biology and Medicine.
[19] Protein Synthesis in Nucleated and Non-nucleated Halves of Acetabularia mediterranea studied with Carbon-14 Dioxide , 1951, Nature.
[20] J. Smith,et al. Chromatographic studies of nucleic acids. 4. The nucleic acid of the turnip yellow mosaic virus including a note on the nucleic acid of the tomato bushy stunt virus. , 1951, The Biochemical journal.
[21] Dounce Al. Duplicating mechanism for peptide chain and nucleic acid synthesis , 1952 .
[22] D. Brown,et al. 13. Nucleotides. Part X. Some observations on the structure and chemical behaviour of the nucleic acids , 1952 .
[23] F. Sanger,et al. The arrangement of amino acids in proteins. , 1952, Advances in protein chemistry.
[24] Amino Acids of Turnip Yellow Mosaic Virus.∗ † , 1952, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.
[25] A. D. Hershey,et al. INDEPENDENT FUNCTIONS OF VIRAL PROTEIN AND NUCLEIC ACID IN GROWTH OF BACTERIOPHAGE , 1952, The Journal of general physiology.
[26] H. Borsook,et al. Incorporation in vitro of labeled amino acids into proteins of rabbit reticulocytes. , 1952, The Journal of biological chemistry.
[27] C. A. Knight,et al. The preparation and properties of some plant virus nucleic acids. , 1953, The Journal of biological chemistry.
[28] D. Keilin,et al. Hæmoglobin in Protozoa , 1953, Nature.
[29] L. Pauling,et al. Stable configurations of polypeptide chains , 1953, Proceedings of the Royal Society of London. Series B - Biological Sciences.
[30] F. Crick,et al. Molecular Structure of Nucleic Acids: A Structure for Deoxyribose Nucleic Acid , 1953, Nature.
[31] D. Keilin,et al. Hæmoglobin in Fungi: Hæmoglobin in Moulds: Neurospora crassa and Penicillium notatum , 1953, Nature.
[32] G. Fasman,et al. Structure of Adenylic Acids a and b , 1953, Nature.
[33] H. R. Wilson,et al. Helical Structure of Crystalline Deoxypentose Nucleic Acid , 1953, Nature.
[34] R. Lester. IN VITRO INCORPORATION OF LEUCINE INTO THE PROTEINS OF MICROCOCCUS LYSODEIKTICUS , 1953 .
[35] D. Keilin. Hæmoglobin in Fungi: Occurrence of Hæmoglobin in Yeast and the Supposed Stabilization of the Oxygenated Cytochrome Oxidase , 1953, Nature.
[36] V. Du Vigneaud,et al. A partial sequence of amino acids in performic acid-oxidized vasopressin. , 1954, The Journal of biological chemistry.
[37] M. Beljanski. L'action de la ribonucléase et de la desoxyribonucléase sur l'incorporation de glycocolle radioactif dans les protéines de lysats de Micrococcus lysodeikticus , 1954 .
[38] J. Bijvoet,et al. Crystal structure and absolute configuration of the hydrochloride and hydrobromide of d(−)‐isoleucine , 1954 .
[39] F. R. Bettelheim. TYROSINE-O-SULFATE IN A PEPTIDE FROM FIBRINOGEN , 1954 .
[40] E. Thompson. The N-terminal sequence of serum albumins; observations on the thiohydantoin method. , 1954, The Journal of biological chemistry.
[41] G. Gamow. Possible Relation between Deoxyribonucleic Acid and Protein Structures , 1954, Nature.
[42] A. Rich,et al. Physical Studies on Ribonucleic Acid , 1954, Nature.
[43] A. Rich,et al. SOME RELATIONS BETWEEN DNA AND RNA. , 1954, Proceedings of the National Academy of Sciences of the United States of America.
[44] M. Flavin. The linkage of phosphate to protein in pepsin and ovalbumin. , 1954, The Journal of biological chemistry.
[45] E. F. GALE,et al. Effect of Nucleic Acids on Protein Synthesis and Amino-Acid Incorporation in Disrupted Staphylococcal Cells , 1954, Nature.
[46] A. Pardee. NUCLEIC ACID PRECURSORS AND PROTEIN SYNTHESIS. , 1954, Proceedings of the National Academy of Sciences of the United States of America.
[47] R. Sinsheimer. The action of pancreatic desoxyribonuclease. I. Isolation of mono- and dinucleotides. , 1954, The Journal of biological chemistry.
[48] V. Allfrey. AMINO ACID INCORPORATION BY ISOLATED THYMUS NUCLEI. I. THE ROLE OF DESOXYRIBONUCLEIC ACID IN PROTEIN SYNTHESIS. , 1954, Proceedings of the National Academy of Sciences of the United States of America.
[49] R S Ledley,et al. DIGITAL COMPUTATIONAL METHODS IN SYMBOLIC LOGIC, WITH EXAMPLES IN BIOCHEMISTRY. , 1955, Proceedings of the National Academy of Sciences of the United States of America.