Germination of Wheat Embryos and the Transport of Amino Acids into a Protein Synthesis Precursor Pool
- 1 July 1982
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 70 (1) , 67-73
- https://doi.org/10.1104/pp.70.1.67
Abstract
Wheat (Triticum aestivum L. var. Lew) embryonic axes take up externally supplied radioactive amino acid (from a solution greater than 2 millimolar) such that the specific radioactivity of the total internal amino acid rapidly reaches that of the external solution. Nevertheless, incorporation of radioactive amino acid into protein increases steadily as the concentration of external amino acid is increased, indicating that the amino acid that is precursor to protein synthesis is not in equilibrium with the total internal amino acid pool. When the external source of amino acid is removed, incorporation of radiolabeled amino acid into protein continues at a rate comparable to that of embryos maintained in the radioactive solution. In explanation of these data, it is suggested that there are two separate cytoplasmic pools of amino acids, one a protein synthesis precursor pool, and the second, an expandable pool into which exogenous radioactive amino acids are taken up. The protein synthesis pool is fed at a limited rate from the expandable pool and at a far greater rate from an endogenous source. As a consequence, the specific activity of the amino acid that is the precursor for protein synthesis is considerably below that of the total internal pool and is determined by the rate of movement into the protein synthesis pool from the expanded radioactive cytoplasmic pool. The rate of movement of amino acids from the expandable pool into the protein synthesis pool increases approximately 5-fold during the initial 4.5 hours of embryo germination. When this change is considered in analyzing the relative rates of protein synthesis, there is probably no more than a 2-fold increase in protein synthetic capacity between embryos germinated for 1.5 and 4.5 hours. The leveling off of the change in transport capacity after 4.5 hours suggests that the earlier increase in the rate of this process may be a necessary step before the embryos can begin to accelerate their growth rate.Keywords
This publication has 28 references indexed in Scilit:
- [20] Methods for determining the extent of tRNA aminoacylation in vivo in cultured mammalian cellsPublished by Elsevier ,1979
- All factors required for protein synthesis are retained on heparin bound to SepharoseBiochemical Journal, 1978
- FORMATION OF AN 80 S METHIONYL-TRANSFER-RNA INITIATION COMPLEX WITH SOLUBLE FACTORS FROM WHEAT-GERM1976
- Polyribosome formation in early wheat embryo germination independent of either transcription or polyadenylationNature, 1975
- Sampling of the leucine pool from the growing peptide chain: Difference in leucine specific activity of peptidyl-transfer RNA from free and membrane-bound polysomesJournal of Molecular Biology, 1975
- Preformed mRNA and the Programming of Early Embryo DevelopmentPublished by Springer Nature ,1975
- Source of Amino Acids Used for Protein Synthesis in HeLa CellsEuropean Journal of Biochemistry, 1974
- Compartmentation of free amino acids for protein synthesis in rat liverBiochemical Journal, 1974
- [68] The wheat embryo cell-free systemPublished by Elsevier ,1974
- Compartmentation of Free Valine and Its Relation to Protein Turnover in Perfused Rat LiverJournal of Biological Chemistry, 1972