N-terminal protein acetylation (NTA) is a prevalent protein modification essential for viability in animals and plants. The dominant executor of NTA is the ribosome tethered Nα-acetyl- transferase A (NatA) complex. However, the impact of NatA on protein fate is still enigmatic. Here, we demonstrate that depletion of NatA activity leads to a 4-fold increase in global protein turnover via the ubiquitin-proteasome system in Arabidopsis. Surprisingly, a con- comitant increase in translation, actioned via enhanced Target-of-Rapamycin activity, is also observed, implying that defective NTA triggers feedback mechanisms to maintain steady- state protein abundance. Quantitative analysis of the proteome, the translatome, and the ubiquitome reveals th...
Abstract N-terminal acetylation (NTA) is a highly abundant protein modification catalyzed by N-termi...
International audienceThe acetylation-dependent (Ac/)N-degron pathway degrades proteins through reco...
The amino- (N-) terminus (Nt) of a protein can undergo a diverse array of co- and posttranslational ...
N-terminal protein acetylation (NTA) is a prevalent protein modification essential for viability in ...
Two recent studies show that cotranslational N-terminal protein acetylation (NTA) promotes proteome ...
International audienceN-terminal acetylation (NTA) is one of the most abundant protein modifications...
N-terminal (Nt-) acetylation is a widespread but poorly understood co-translational protein modifica...
N-terminal acetylation (NTA) catalysed by N-terminal acetyltransferases (Nats) is among the most com...
International audienceN a-terminal acetylation (NTA) is a prevalent protein modification in eukaryot...
N-terminal acetylation (NTA) is an ancient protein modification conserved throughout all domains of ...
International audienceIn humans, the Huntingtin yeast partner K (HYPK) binds to the ribosome-associa...
N-terminal modifications play a major role in the fate of proteins in terms of activity, stability, ...
Abstract Protein N-terminal (Nt) acetylation is one of the most abundant modifications in eukaryotes...
Even though Nα-terminal acetylation (NTA) is conserved throughout the three domains of life, knowled...
International audienceIn humans, the Huntingtin yeast partner K (HYPK) binds to the ribosome-associa...
Abstract N-terminal acetylation (NTA) is a highly abundant protein modification catalyzed by N-termi...
International audienceThe acetylation-dependent (Ac/)N-degron pathway degrades proteins through reco...
The amino- (N-) terminus (Nt) of a protein can undergo a diverse array of co- and posttranslational ...
N-terminal protein acetylation (NTA) is a prevalent protein modification essential for viability in ...
Two recent studies show that cotranslational N-terminal protein acetylation (NTA) promotes proteome ...
International audienceN-terminal acetylation (NTA) is one of the most abundant protein modifications...
N-terminal (Nt-) acetylation is a widespread but poorly understood co-translational protein modifica...
N-terminal acetylation (NTA) catalysed by N-terminal acetyltransferases (Nats) is among the most com...
International audienceN a-terminal acetylation (NTA) is a prevalent protein modification in eukaryot...
N-terminal acetylation (NTA) is an ancient protein modification conserved throughout all domains of ...
International audienceIn humans, the Huntingtin yeast partner K (HYPK) binds to the ribosome-associa...
N-terminal modifications play a major role in the fate of proteins in terms of activity, stability, ...
Abstract Protein N-terminal (Nt) acetylation is one of the most abundant modifications in eukaryotes...
Even though Nα-terminal acetylation (NTA) is conserved throughout the three domains of life, knowled...
International audienceIn humans, the Huntingtin yeast partner K (HYPK) binds to the ribosome-associa...
Abstract N-terminal acetylation (NTA) is a highly abundant protein modification catalyzed by N-termi...
International audienceThe acetylation-dependent (Ac/)N-degron pathway degrades proteins through reco...
The amino- (N-) terminus (Nt) of a protein can undergo a diverse array of co- and posttranslational ...