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Cevipabulin-tubulin complex reveals a novel agent binding site on α-tubulin with tubulin degradation effect.


ABSTRACT: Microtubules, composed of αβ-tubulin heterodimers, have remained popular anticancer targets for decades. Six known binding sites on tubulin dimers have been identified thus far, with five sites on β-tubulin and only one site on α-tubulin, hinting that compounds binding to α-tubulin are less well characterized. Cevipabulin, a microtubule-active antitumor clinical candidate, is widely accepted as a microtubule-stabilizing agent by binding to the vinblastine site. Our x-ray crystallography study reveals that, in addition to binding to the vinblastine site, cevipabulin also binds to a new site on α-tubulin. We find that cevipabulin at this site pushes the αT5 loop outward, making the nonexchangeable GTP exchangeable, which reduces the stability of tubulin, leading to its destabilization and degradation. Our results confirm the existence of a new agent binding site on α-tubulin and shed light on the development of tubulin degraders as a new generation of antimicrotubule drugs targeting this novel site.

SUBMITTER: Yang J 

PROVIDER: S-EPMC8133757 | biostudies-literature | 2021 May

REPOSITORIES: biostudies-literature

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Cevipabulin-tubulin complex reveals a novel agent binding site on α-tubulin with tubulin degradation effect.

Yang Jianhong J   Yu Yamei Y   Li Yong Y   Yan Wei W   Ye Haoyu H   Niu Lu L   Tang Minghai M   Wang Zhoufeng Z   Yang Zhuang Z   Pei Heying H   Wei Haoche H   Zhao Min M   Wen Jiaolin J   Yang Linyu L   Ouyang Liang L   Wei Yuquan Y   Chen Qiang Q   Li Weimin W   Chen Lijuan L  

Science advances 20210519 21


Microtubules, composed of αβ-tubulin heterodimers, have remained popular anticancer targets for decades. Six known binding sites on tubulin dimers have been identified thus far, with five sites on β-tubulin and only one site on α-tubulin, hinting that compounds binding to α-tubulin are less well characterized. Cevipabulin, a microtubule-active antitumor clinical candidate, is widely accepted as a microtubule-stabilizing agent by binding to the vinblastine site. Our x-ray crystallography study re  ...[more]

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