Abstract
1. Nuclei prepared from calf thymus tissue in a sucrose medium actively incorporate labelled amino acids into their proteins. This is an aerobic process which is dependent on nuclear oxidative phosphorylation. 2. Evidence is presented to show that the uptake of amino acids represents nuclear protein synthesis. 3. The deoxyribonucleic acid of the nucleus plays a role in amino acid incorporation. Protein synthesis virtually ceases when the DNA is removed from the nucleus, and uptake resumes when the DNA is restored. 4. In the essential mechanism of amino acid incorporation, the role of the DNA can be filled by denatured or partially degraded DNA, by DNAs from other tissues, and even by RNA. Purine and pyrimidine bases, monoribonucleotides, and certain dinucleotides are unable to substitute for DNA in this system. 5. When the proteins of the nucleus are fractionated and classified according to their specific activities, one finds the histones to be relatively inert. The protein fraction most closely associated with the DNA has a very high activity. A readily extractable ribonucleoprotein complex is also extremely active, and it is tempting to speculate that this may be an intermediary in nucleocytoplasmic interaction. 6. The isolated nucleus can incorporate glycine into nucleic acid purines, and orotic acid into the pyrimidines of its RNA. Orotic acid uptake into nuclear RNA requires the presence of the DNA. 7. The synthesis of ribonucleic acid can be inhibited at any time by a benzimidazole riboside (DRB) (which also retards influenza virus multiplication (11)). 8. The incorporation of amino acids into nuclear proteins seems to require a preliminary activation of the nucleus. This can be inhibited by the same benzimidazole derivative (DRB) which interferes with RNA synthesis, provided that the inhibitor is present at the outset of the incubation. DRB added 30 minutes later has no effect on nuclear protein synthesis. These results suggest that the activation of the nucleus so that it actively incorporates amino acids into its proteins requires a preliminary synthesis of ribonucleic acid. 9. Together with earlier observations (27, 28) on the incorporation of amino acids by cytoplasmic particulates, these results show that protein synthesis can occur in both nucleus and cytoplasm.
Keywords
CELL NUCLEUS
PROTEINS/metabolism
MeSH Terms
Animals
Cattle
Cell Nucleus
Cytoplasm
DNA
Protein Biosynthesis
Proteins/metabolism
Purines
RNA
Chemicals
Proteins
Purines
RNA
DNA
purine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
ALLFREY V G
MIRSKY A E
OSAWA S
References (26)
26 references, click to expand
-
Purine and pyrimidine contents of some desoxypentose nucleic acids.
J Gen Physiol. 1950 May 20;33(5):497-510
PMID: 15422104
-
The assimilation of amino-acids by bacteria. XV. Actions of antibiotics on nucleic acid and protein synthesis in Staphylococcus aureus.
Biochem J. 1953 Feb;53(3):493-8
PMID: 13032100
-
Kinetics of formation and utilization of metabolic pools in the biosynthesis of protein and nucleic acid.
Biochim Biophys Acta. 1956 Aug;21(2):211-26
PMID: 13363900
-
STUDIES ON THE CHEMICAL NATURE OF THE SUBSTANCE INDUCING TRANSFORMATION OF PNEUMOCOCCAL TYPES : INDUCTION OF TRANSFORMATION BY A DESOXYRIBONUCLEIC ACID FRACTION ISOLATED FROM PNEUMOCOCCUS TYPE III.
J Exp Med. 1944 Feb 1;79(2):137-58
PMID: 19871359
-
Amino acid incorporation by fragmented staphylococcal cells.
Biochem J. 1953 Jun 20;55(319th Meeting):xi
PMID: 13093657
-
Dissymmetry in nucleotide sequence of desoxypentose nucleic acids.
J Biol Chem. 1950 Nov;187(1):1-14
PMID: 14794682
-
The inhibition of enzyme formation by amino acid analogues.
J Bacteriol. 1952 Aug;64(2):207-21
PMID: 14955514
-
The state of the chromosomes in the interphase nucleus.
J Gen Physiol. 1949 Mar 20;32(4):489-502
PMID: 18114562
-
RECONSTITUTION OF ACTIVE TOBACCO MOSAIC VIRUS FROM ITS INACTIVE PROTEIN AND NUCLEIC ACID COMPONENTS.
Proc Natl Acad Sci U S A. 1955 Oct 15;41(10):690-8
PMID: 16589730
-
High inhibitory activity of certain halogenated ribofuranosylbenzimidazoles on influenza B virus multiplication.
J Bacteriol. 1956 Jul;72(1):54-8
PMID: 13345774
-
Nucleoproteins of Cell Nuclei.
Proc Natl Acad Sci U S A. 1942 Sep;28(9):344-52
PMID: 16588555
-
Histones with high lysine content.
J Gen Physiol. 1955 Jan 20;38(3):405-13
PMID: 13221780
-
Protein synthesis in isolated cell nuclei.
Nature. 1955 Dec 3;176(4492):1042-9
PMID: 13272745
-
Soluble enzymes of nuclei isolated in sucrose and nonaqueous media; a comparative study.
J Gen Physiol. 1953 Nov 20;37(2):177-87
PMID: 13109154
-
Inhibition of influenza virus multiplication by N-glycosides of benzimidazoles-N.
J Exp Med. 1954 Mar;99(3):227-50
PMID: 13130796
-
Synthesis of protein in the pancreas. II. The role of ribonucleoprotein in protein synthesis.
J Gen Physiol. 1953 Nov 20;37(2):157-75
PMID: 13109153
-
Uptake of radioactive alanine in vitro into the proteins of rat liver fractions.
J Biol Chem. 1952 Apr;195(2):549-65
PMID: 14946165
-
Comparison of the influences of adrenocortical hormones on the growth and involution of lymphatic organs.
Endocrinology. 1954 Feb;54(2):130-46
PMID: 13151105
-
Uptake of glycine-N15 by components of cell nuclei.
J Gen Physiol. 1952 Nov;36(2):173-9
PMID: 13011275
-
The Separation of Purine and Pyrimidine Bases and of Nucleotides by Ion Exchange.
Science. 1949 Apr 15;109(2833):377-8
PMID: 17749594
-
The isolation of cell nuclei in non-aqueous media.
J Gen Physiol. 1952 Jan;35(3):529-54
PMID: 14898034
-
Utilization of thymidine-C14 by bone marrow cells and isolated thymus nuclei.
J Biol Chem. 1956 Jun;220(2):639-51
PMID: 13331922
-
A sensitive method for the determination of ribonucleic acid in tissues and microorganisms.
J Biol Chem. 1956 Aug;221(2):635-49
PMID: 13357458
-
Nuclei from normal and leukemic mouse spleen. I. The isolation of nuclei in neutral medium.
Cancer Res. 1950 Dec;10(12):751-4
PMID: 14792540
-
Reactivation of tobacco mosaic virus infectivity in mixtures of virus protein and nucleic acid.
Biochim Biophys Acta. 1956 Jan;19(1):198-9
PMID: 13304100
-
The formation apurinic acid from the desoxyribonucleic acid of calf thymus.
J Biol Chem. 1952 Mar;195(1):49-63
PMID: 14938354