Posté le 5 décembre 2020 sur BioRxivSpatiotemporal patterns of microtubule modifications such as acetylation underlie diverse cellular functions. While the molecular identity of the acetylating agent, α-tubulin N-acetyltransferase 1 (α-TAT1), as well as the functional consequences of microtubule acetylation have been revealed, the molecular mechanisms that regulate multi-tasking α-TAT1 action for dynamic acetylation remain obscure. Here we identified a signal motif in the intrinsically disordered C-terminus of α-TAT1, which comprises three functional elements - nuclear export, nuclear import and cytosolic retention. Their balance is tuned via phosphorylation by serine-threonine kinases to determine subcellular localization of α-TAT1. While ...
<div><p>The αβ-tubulin subunits of microtubules can undergo a variety of evolutionarily-conserved po...
International audienceIn most eukaryotic cells microtubules undergo post-translational modifications...
International audienceMicrotubules play a crucial role in mesenchymal migration by controlling cell ...
International audienceSpatiotemporally dynamic microtubule acetylation underlies diverse physiologic...
Acetylation ofα-tubulin at lysine 40 (K40) is a well-conserved posttranslational modification that m...
Microtubules contribute to diverse cellular processes through balancing dynamic, short-lived and sta...
New findings about posttranslational modifications of microtubules lead us to believe that microtubu...
Post-translational modification of tubulin serves as a powerful means for rapidly adjusting the func...
Protein acetylation is an important posttranslational modification with the recent identification of...
SummaryAcetylation of α-tubulin Lys40 by tubulin acetyltransferase (TAT) is the only known posttrans...
Microtubules are essential to neuron shape and function. Acetylation of tubulin has the potential to...
In most eukaryotic cells microtubules undergo post-translational modifications such as acetylation o...
The Tat protein of HIV-1 has several well-known properties, such as nucleocytoplasmic trafficking, t...
The Tat protein of HIV-1 has several well-known properties, such as nucleocytoplasmic trafficking, t...
Microtubules (MTs) are highly conserved, cytoskeletal polymers that are involved in a large number o...
<div><p>The αβ-tubulin subunits of microtubules can undergo a variety of evolutionarily-conserved po...
International audienceIn most eukaryotic cells microtubules undergo post-translational modifications...
International audienceMicrotubules play a crucial role in mesenchymal migration by controlling cell ...
International audienceSpatiotemporally dynamic microtubule acetylation underlies diverse physiologic...
Acetylation ofα-tubulin at lysine 40 (K40) is a well-conserved posttranslational modification that m...
Microtubules contribute to diverse cellular processes through balancing dynamic, short-lived and sta...
New findings about posttranslational modifications of microtubules lead us to believe that microtubu...
Post-translational modification of tubulin serves as a powerful means for rapidly adjusting the func...
Protein acetylation is an important posttranslational modification with the recent identification of...
SummaryAcetylation of α-tubulin Lys40 by tubulin acetyltransferase (TAT) is the only known posttrans...
Microtubules are essential to neuron shape and function. Acetylation of tubulin has the potential to...
In most eukaryotic cells microtubules undergo post-translational modifications such as acetylation o...
The Tat protein of HIV-1 has several well-known properties, such as nucleocytoplasmic trafficking, t...
The Tat protein of HIV-1 has several well-known properties, such as nucleocytoplasmic trafficking, t...
Microtubules (MTs) are highly conserved, cytoskeletal polymers that are involved in a large number o...
<div><p>The αβ-tubulin subunits of microtubules can undergo a variety of evolutionarily-conserved po...
International audienceIn most eukaryotic cells microtubules undergo post-translational modifications...
International audienceMicrotubules play a crucial role in mesenchymal migration by controlling cell ...