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Updated: Apr 25, 2026

A Facile Protocol to Generate Site-Specifically Acetylated Proteins in Escherichia Coli
Published on: December 9, 2017
In silico analysis of protein Lys-N(๏ฟฝ๏ฟฝ)-acetylation in plants
R Shyama Prasad Rao1, Jay J Thelen1, Jรกn A Miernyk2
1Division of Biochemistry, University of Missouri Columbia, MO, USA ; Interdisciplinary Plant Group, University of Missouri Columbia, MO, USA.
Abstract:
Among post-translational modifications, there are some conceptual similarities between Lys-N(๐)-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; 1000s 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 post-translational modifications of histones, more recent studies have addressed metabolic regulation. Being directly coupled with cellular CoA/acetyl-CoA and NAD/NADH, reversible Lys-N(๐)-acetylation has the potential to control, or contribute to control, of primary metabolism, signaling, and growth and development.
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