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Effects of single amino acid deficiency on mRNA translation are markedly different for methionine versus leucine.

Citation
Mazor, K. M., et al. “Effects Of Single Amino Acid Deficiency On Mrna Translation Are Markedly Different For Methionine Versus Leucine.”. Scientific Reports, p. 8076.
Center Albert Einstein College of Medicine
Author Kevin M Mazor, Leiming Dong, Yuanhui Mao, Robert Swanda V, Shu-Bing Qian, Martha H Stipanuk
Abstract

Although amino acids are known regulators of translation, the unique contributions of specific amino acids are not well understood. We compared effects of culturing HEK293T cells in medium lacking either leucine, methionine, histidine, or arginine on eIF2 and 4EBP1 phosphorylation and measures of mRNA translation. Methionine starvation caused the most drastic decrease in translation as assessed by polysome formation, ribosome profiling, and a measure of protein synthesis (puromycin-labeled polypeptides) but had no significant effect on eIF2 phosphorylation, 4EBP1 hyperphosphorylation or 4EBP1 binding to eIF4E. Leucine starvation suppressed polysome formation and was the only tested condition that caused a significant decrease in 4EBP1 phosphorylation or increase in 4EBP1 binding to eIF4E, but effects of leucine starvation were not replicated by overexpressing nonphosphorylatable 4EBP1. This suggests the binding of 4EBP1 to eIF4E may not by itself explain the suppression of mRNA translation under conditions of leucine starvation. Ribosome profiling suggested that leucine deprivation may primarily inhibit ribosome loading, whereas methionine deprivation may primarily impair start site recognition. These data underscore our lack of a full understanding of how mRNA translation is regulated and point to a unique regulatory role of methionine status on translation initiation that is not dependent upon eIF2 phosphorylation.

Year of Publication
2018
Journal
Scientific reports
Volume
8
Issue
1
Number of Pages
8076
Date Published
12/2018
ISSN Number
2045-2322
DOI
10.1038/s41598-018-26254-2
Alternate Journal
Sci Rep
PMID
29795412
PMCID
PMC5967319
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