Control of Translation Initiation through Integration of Signals Generated by Hormones, Nutrients, and Exercise

Control of translation initiation in a tissue of an intact mammalian organism is a highly complex process requiring the continuous integration of multiple positive and negative stimuli. For a tissue such as skeletal muscle, which has the capacity to undergo dramatic changes in size and protein conte...

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Published inThe Journal of biological chemistry Vol. 285; no. 38; pp. 29027 - 29032
Main Authors Kimball, Scot R., Jefferson, Leonard S.
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 17.09.2010
American Society for Biochemistry and Molecular Biology
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Abstract Control of translation initiation in a tissue of an intact mammalian organism is a highly complex process requiring the continuous integration of multiple positive and negative stimuli. For a tissue such as skeletal muscle, which has the capacity to undergo dramatic changes in size and protein content, translation initiation contributes importantly to the regulation of global rates of protein synthesis and is controlled by numerous stimuli, including those arising from nutrients and hormones in the circulating blood, as well as from contraction-induced signaling within the tissue. Many of the pathways conveying signals generated by these stimuli converge on mTORC1, a serine-threonine protein kinase that has been termed the nutrient and energy sensor of the cell and that plays a prominent role in the regulation of cell growth. Control of translation initiation by mTORC1 is mediated through phosphorylation of downstream targets that modulate the binding of mRNA to the 43 S preinitiation complex. Control of translation initiation is also mediated through modulation of binding of initiator methionyl-tRNA to the 40 S ribosomal subunit. Together, modulation of these two regulatory steps in translation initiation accounts in large part for changes in protein synthesis in skeletal muscle produced by the integration of inputs from hormones, nutrients, and exercise.
AbstractList Control of translation initiation in a tissue of an intact mammalian organism is a highly complex process requiring the continuous integration of multiple positive and negative stimuli. For a tissue such as skeletal muscle, which has the capacity to undergo dramatic changes in size and protein content, translation initiation contributes importantly to the regulation of global rates of protein synthesis and is controlled by numerous stimuli, including those arising from nutrients and hormones in the circulating blood, as well as from contraction-induced signaling within the tissue. Many of the pathways conveying signals generated by these stimuli converge on mTORC1, a serine-threonine protein kinase that has been termed the nutrient and energy sensor of the cell and that plays a prominent role in the regulation of cell growth. Control of translation initiation by mTORC1 is mediated through phosphorylation of downstream targets that modulate the binding of mRNA to the 43 S preinitiation complex. Control of translation initiation is also mediated through modulation of binding of initiator methionyl-tRNA to the 40 S ribosomal subunit. Together, modulation of these two regulatory steps in translation initiation accounts in large part for changes in protein synthesis in skeletal muscle produced by the integration of inputs from hormones, nutrients, and exercise.
Author Jefferson, Leonard S.
Kimball, Scot R.
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  fullname: Jefferson, Leonard S.
BackLink https://www.ncbi.nlm.nih.gov/pubmed/20576612$$D View this record in MEDLINE/PubMed
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Issue 38
Keywords Amino Acid
mTOR Complex (mTORC)
Skeletal Muscle
Translation Regulation
Insulin
Translation Initiation Factors
Language English
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Snippet Control of translation initiation in a tissue of an intact mammalian organism is a highly complex process requiring the continuous integration of multiple...
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SubjectTerms Amino Acid
Animals
Exercise - physiology
Hormones - metabolism
Humans
Insulin
Mechanistic Target of Rapamycin Complex 1
Minireviews
Models, Biological
mTOR Complex (mTORC)
Multiprotein Complexes
Muscle, Skeletal - metabolism
Protein Synthesis and Degradation
Proteins
Ribosome Subunits, Small, Eukaryotic - metabolism
RNA, Transfer, Met - metabolism
Signal Transduction - physiology
Skeletal Muscle
TOR Serine-Threonine Kinases
Transcription Factors - metabolism
Translation Initiation Factors
Translation Regulation
Title Control of Translation Initiation through Integration of Signals Generated by Hormones, Nutrients, and Exercise
URI https://dx.doi.org/10.1074/jbc.R110.137208
https://www.ncbi.nlm.nih.gov/pubmed/20576612
https://search.proquest.com/docview/754004165
https://search.proquest.com/docview/872124453
https://pubmed.ncbi.nlm.nih.gov/PMC2937931
Volume 285
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