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PMID: 7083049 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Synthesis and turnover of proteins and mRNA in germinating wheat embryos.

Canadian journal of biochemistry ·Vol. 60 ·No. 3 ·1982-03-00 ·Pages 389-97

Grzelczak ZF, Sattolo MH, Hanley-Bowdoin LK, Kennedy TD, Lane BG

Abstract

The most prominent methionine-labeled protein made when cell-free systems are programmed with bulk mRNA from dry wheat embryos has been identified with what may be the most abundant protein in dry wheat embryos. The protein has been brought to purity and has a distinctive amino acid composition, Gly and Glx accounting for almost 40% of the total amino acids. Designated E because of its conspicuous association with early inhibition of dry wheat embryos, the protein and its mRNA are abundant during the "early" phase (0--1 h) of postimbibition development, and easily detected during "lag" phase (1--5 h), but they are almost totally degraded soon after entry into the "growth" phase of development, by about 10 h postimbibition. The most prominent methionine-labeled protein peculiar to the cell-free translational capacity of bulk mRNA from "growth" phase embryos is not detected as a product of in vivo synthesis. Its electrophoretic properties and its time course of emergence, after 5 h postimbibition development, suggest that this major product of cell-free synthesis may be an in vitro counterpart to a prominent methionine-labeled protein made only in vivo, by "growth" phase embryos. Designated G because of its conspicuous association with "growth" phase development, the cell-free product does not comigrate with any prominent dye-stained band in electrophoretic distributions of wheat proteins. The suspected cellular counterpart to G, also, does not comigrate with a prominent dye-stained wheat protein during electrophoresis, and although found in particulate as well as soluble fractions of wheat embryo homogenates it is not concentrated in either nuclei or mitochondria, as isolated.

MeSH Terms
Amino Acids/metabolism Cell-Free System Methionine/metabolism Plant Proteins/analysis,metabolism RNA, Messenger/metabolism Seeds Time Factors Triticum Water/metabolism
Chemicals
Amino Acids Plant Proteins RNA, Messenger Water Methionine
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Grzelczak Z F
Sattolo M H
Hanley-Bowdoin L K
Kennedy T D
Lane B G
Article Info
Journal
Canadian journal of biochemistry
Abbr.
Can J Biochem
ISSN
0008-4018
Published
1982-03-00
Pages
389-97
Language
English
Region
Canada
NLM ID
0421034
Subset
IM
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