In silico analysis of protein Lys-Nε-acetylation in plants

Among posttranslational modifications, there are some conceptual similarities between Lys-NƐ-acetylation and Ser/Thr/Tyr O-phosphorylation. Herein we present a bioinformatics-based overview of reversible protein Lys-acetylation, including some comparisons with reversible protein phosphorylation. T...

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Main Authors: R. Shyama Prasad eRao, Jay eThelen, Ján A Miernyk
Format: Article
Language:English
Published: Frontiers Media S.A. 2014-08-01
Series:Frontiers in Plant Science
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fpls.2014.00381/full
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spelling doaj-9de70a2a91bb47b6bfad064d78627e1c2020-11-24T22:30:22ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2014-08-01510.3389/fpls.2014.0038191407In silico analysis of protein Lys-Nε-acetylation in plantsR. Shyama Prasad eRao0Jay eThelen1Ján A Miernyk2University of MissouriUniversity of MissouriUniversity of MissouriAmong posttranslational modifications, there are some conceptual similarities between Lys-NƐ-acetylation and Ser/Thr/Tyr O-phosphorylation. Herein we present a bioinformatics-based overview of reversible protein Lys-acetylation, including some comparisons with reversible protein phosphorylation. The study of Lys-acetylation of plant proteins has lagged behind studies of mammalian and microbial cells; thousands of acetylation sites have been identified in mammalian proteins compared with only hundreds of sites in plant proteins. While most previous emphasis was focused on posttranslational modifications of histones, more recent studies have addressed metabolic regulation. Being directly coupled with cellular CoA/acetyl-CoA and NAD/NADH, reversible Lys-NƐ-acetylation has the potential to control, or contribute to control, of primary metabolism, signaling, and growth and development.http://journal.frontiersin.org/Journal/10.3389/fpls.2014.00381/fullregulationsignalingInteractomeacetyltransferasepost-translational modificationBromodomain
collection DOAJ
language English
format Article
sources DOAJ
author R. Shyama Prasad eRao
Jay eThelen
Ján A Miernyk
spellingShingle R. Shyama Prasad eRao
Jay eThelen
Ján A Miernyk
In silico analysis of protein Lys-Nε-acetylation in plants
Frontiers in Plant Science
regulation
signaling
Interactome
acetyltransferase
post-translational modification
Bromodomain
author_facet R. Shyama Prasad eRao
Jay eThelen
Ján A Miernyk
author_sort R. Shyama Prasad eRao
title In silico analysis of protein Lys-Nε-acetylation in plants
title_short In silico analysis of protein Lys-Nε-acetylation in plants
title_full In silico analysis of protein Lys-Nε-acetylation in plants
title_fullStr In silico analysis of protein Lys-Nε-acetylation in plants
title_full_unstemmed In silico analysis of protein Lys-Nε-acetylation in plants
title_sort in silico analysis of protein lys-nε-acetylation in plants
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2014-08-01
description Among posttranslational modifications, there are some conceptual similarities between Lys-NƐ-acetylation and Ser/Thr/Tyr O-phosphorylation. Herein we present a bioinformatics-based overview of reversible protein Lys-acetylation, including some comparisons with reversible protein phosphorylation. The study of Lys-acetylation of plant proteins has lagged behind studies of mammalian and microbial cells; thousands of acetylation sites have been identified in mammalian proteins compared with only hundreds of sites in plant proteins. While most previous emphasis was focused on posttranslational modifications of histones, more recent studies have addressed metabolic regulation. Being directly coupled with cellular CoA/acetyl-CoA and NAD/NADH, reversible Lys-NƐ-acetylation has the potential to control, or contribute to control, of primary metabolism, signaling, and growth and development.
topic regulation
signaling
Interactome
acetyltransferase
post-translational modification
Bromodomain
url http://journal.frontiersin.org/Journal/10.3389/fpls.2014.00381/full
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