In Arabidopsis thaliana, the evolutionary conserved N-terminal acetyltransferase (Nat) complexes NatA and NatB co-translationally acetylate 60% of the proteome. Both have recently been implicated in the regulation of plant stress responses. While NatA mediates drought tolerance, NatB is required for pathogen resistance and the adaptation to high salinity and high osmolarity. Salt and osmotic stress impair protein folding and result in the accumulation of misfolded proteins in the endoplasmic reticulum (ER). The ER-membrane resident E3 ubiquitin ligase DOA10 targets misfolded proteins for degradation during ER stress and is conserved among eukaryotes. In yeast, DOA10 recognizes conditional degradation signals (Ac/N-degrons) created by NatA a...
N-α-terminal acetylation is one of the most common, but least understood modifications of eukaryotic...
International audienceIn humans and plants, N-terminal acetylation plays a central role in protein h...
International audienceIn humans and plants, N-terminal acetylation plays a central role in protein h...
N-terminal acetylation (NTA) catalysed by N-terminal acetyltransferases (Nats) is among the most com...
International audienceN-terminal acetylation (NTA) is one of the most abundant protein modifications...
N-terminal protein acetylation (NTA) is a prevalent protein modification essential for viability in ...
International audienceN a-terminal acetylation (NTA) is a prevalent protein modification in eukaryot...
International audienceThe acetylation-dependent (Ac/)N-degron pathway degrades proteins through reco...
<div><p>N-α-terminal acetylation is one of the most common, but least understood modifications of eu...
Even though Nα-terminal acetylation (NTA) is conserved throughout the three domains of life, knowled...
N-terminal (Nt) acetylation is a highly prevalent co-translational protein modification in eukaryote...
N-terminal acetylation (NTA) is an ancient protein modification conserved throughout all domains of ...
Abstract N-terminal acetylation (NTA) is a highly abundant protein modification catalyzed by N-termi...
The Arabidopsis atmak3-1 mutant was identified on the basis of a decreased effective quantum yield o...
N-α-terminal acetylation is one of the most common, but least understood modifications of eukaryotic...
International audienceIn humans and plants, N-terminal acetylation plays a central role in protein h...
International audienceIn humans and plants, N-terminal acetylation plays a central role in protein h...
N-terminal acetylation (NTA) catalysed by N-terminal acetyltransferases (Nats) is among the most com...
International audienceN-terminal acetylation (NTA) is one of the most abundant protein modifications...
N-terminal protein acetylation (NTA) is a prevalent protein modification essential for viability in ...
International audienceN a-terminal acetylation (NTA) is a prevalent protein modification in eukaryot...
International audienceThe acetylation-dependent (Ac/)N-degron pathway degrades proteins through reco...
<div><p>N-α-terminal acetylation is one of the most common, but least understood modifications of eu...
Even though Nα-terminal acetylation (NTA) is conserved throughout the three domains of life, knowled...
N-terminal (Nt) acetylation is a highly prevalent co-translational protein modification in eukaryote...
N-terminal acetylation (NTA) is an ancient protein modification conserved throughout all domains of ...
Abstract N-terminal acetylation (NTA) is a highly abundant protein modification catalyzed by N-termi...
The Arabidopsis atmak3-1 mutant was identified on the basis of a decreased effective quantum yield o...
N-α-terminal acetylation is one of the most common, but least understood modifications of eukaryotic...
International audienceIn humans and plants, N-terminal acetylation plays a central role in protein h...
International audienceIn humans and plants, N-terminal acetylation plays a central role in protein h...