Microtubules (MTs) undergo diverse posttranslational modifications that regulate their structural and functional properties. Among these, polyglutamylation-a dominant and conserved modification targeting unstructured tubulin C-terminal tails-plays a pivotal role in defining the tubulin code. Here, we describe a mechanism by which tubulin tyrosine ligase-like 11 (TTLL11) expands and diversifies the code. Cryo-electron microscopy revealed a unique bipartite MT recognition strategy wherein TTLL11 binding and catalytic domains engage adjacent MT protofilaments. Biochemical and cellular assays identified previously uncharacterized polyglutamylation patterns, showing that TTLL11 directly extends the primary polypeptide chains of α- and β-tubulin in vitro, challenging the prevailing paradigms emphasizing lateral branching. Moreover, cell-based and in vivo data suggest a cross-talk between polyglutamylation and the detyrosination/tyrosination cycle likely linked to the TTLL11-mediated elongation of the primary α-tubulin chain. These findings unveil an unrecognized layer of complexity within the tubulin code and offer mechanistic insights into the molecular basis of functional specialization of MT cytoskeleton.
Mechanistic insights into TTLL11 polyglutamylase-mediated primary tubulin chain elongation.
TTLL11多聚谷氨酰化酶介导的初级微管蛋白链延伸的机制研究
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作者:Campbell Jana, Vosahlikova Miroslava, Ismail Samar, Volnikova Margareta, Motlova Lucia, Kudlacova Julia, Ustinova Kseniya, Snajdr Ivan, Novakova Zora, Basta Miroslav, Gutsche Irina, Moutin Marie-Jo, Desfosses Ambroise, Barinka Cyril
| 期刊: | Science Advances | 影响因子: | 12.500 |
| 时间: | 2025 | 起止号: | 2025 Aug 22; 11(34):eadw1561 |
| doi: | 10.1126/sciadv.adw1561 | 研究方向: | 免疫/内分泌 |
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