Recently, Ne-lysine acetylation was realized to be a prevalent bacterial post-translational modification (PTM), contrary to the historical notion that this was a rare occurrence. Acetylation can impact protein function in multiple ways, by modifying conformation, interactions, subcellular localization or activity. In bacteria, hundreds of proteins are known to be acetylated, including those involved essential processes such as DNA replication, nucleoid organization, translation, cell shape, central carbon metabolism, and even several virulence factors. Despite the growing recognition that numerous proteins are acetylated, the biological significance of the vast majority of these modifications in any bacteria remains largely unknown. Previou...
The emerging view of Ne-lysine acetylation in eukaryotes is of a relatively abundant post-translatio...
Although protein acetylation is widely observed, it has been associated with few specific regulatory...
Post-translational histone modifications abound and regulate multiple nuclear processes. Most modifi...
Recently, Ne-lysine acetylation was realized to be a prevalent bacterial post-translational modifica...
Lysine acetylation is a prevalent post-translational modification in both eukaryotes and prokaryotes...
ABSTRACT Posttranslational modifications, such as Nε-lysine acetylation, regulate protein function. ...
DNA-binding protein HU is highly conserved in bacteria and has been implicated in a range of cellula...
Nucleoid-associated protein HU, a conserved protein across eubacteria is necessary for maintaining t...
Protein lysine acetylation is a post-translational modification that alters the charge, conformation...
Protein lysine acetylation is a post-translational modification that alters the charge, conformation...
©2014. The authors. This document is made available under the CC-BY 4.0 license http://creativecomm...
Evidence suggesting that eukaryotes and archaea use reversible N(ε)-lysine (N(ε)-Lys) acetylation to...
Lysine residues can be post-translationally modified by various acyl modifications in bacteria and e...
Lysine acetylation is a conserved post-translational modification (PTM) which was traditionally beli...
The lysine acetylation of proteins is a reversible post-translational modification that plays a crit...
The emerging view of Ne-lysine acetylation in eukaryotes is of a relatively abundant post-translatio...
Although protein acetylation is widely observed, it has been associated with few specific regulatory...
Post-translational histone modifications abound and regulate multiple nuclear processes. Most modifi...
Recently, Ne-lysine acetylation was realized to be a prevalent bacterial post-translational modifica...
Lysine acetylation is a prevalent post-translational modification in both eukaryotes and prokaryotes...
ABSTRACT Posttranslational modifications, such as Nε-lysine acetylation, regulate protein function. ...
DNA-binding protein HU is highly conserved in bacteria and has been implicated in a range of cellula...
Nucleoid-associated protein HU, a conserved protein across eubacteria is necessary for maintaining t...
Protein lysine acetylation is a post-translational modification that alters the charge, conformation...
Protein lysine acetylation is a post-translational modification that alters the charge, conformation...
©2014. The authors. This document is made available under the CC-BY 4.0 license http://creativecomm...
Evidence suggesting that eukaryotes and archaea use reversible N(ε)-lysine (N(ε)-Lys) acetylation to...
Lysine residues can be post-translationally modified by various acyl modifications in bacteria and e...
Lysine acetylation is a conserved post-translational modification (PTM) which was traditionally beli...
The lysine acetylation of proteins is a reversible post-translational modification that plays a crit...
The emerging view of Ne-lysine acetylation in eukaryotes is of a relatively abundant post-translatio...
Although protein acetylation is widely observed, it has been associated with few specific regulatory...
Post-translational histone modifications abound and regulate multiple nuclear processes. Most modifi...