...
首页> 外文期刊>Molecular biology of the cell >The dual role of fission yeast Tbc1/cofactor C orchestrates microtubule homeostasis in tubulin folding and acts as a GAP for GTPase Alp41/Arl2
【24h】

The dual role of fission yeast Tbc1/cofactor C orchestrates microtubule homeostasis in tubulin folding and acts as a GAP for GTPase Alp41/Arl2

机译:裂变酵母Tbc1 /辅因子C的双重作用协调微管蛋白折叠中的微管稳态,并充当GTPase Alp41 / Arl2的GAP

获取原文
获取原文并翻译 | 示例

摘要

Supplying the appropriate amount of correctly folded α/β-tubulin heterodimers is critical for microtubule dynamics. Formation of assembly-competent heterodimers is remarkably elaborate at the molecular level, in which the α- and β-tubulins are separately processed in a chaperone-dependent manner. This sequential step is performed by the tubulin-folding cofactor pathway, comprising a specific set of regulatory proteins: cofactors A-E. We identified the fission yeast cofactor: the orthologue of cofactor C, Tbc1. In addition to its roles in tubulin folding, Tbc1 acts as a GAP in regulating Alp41/Arl2, a highly conserved small GTPase. Of interest, the expression of GDP- or GTP-bound Alp41 showed the identical microtubule loss phenotype, suggesting that continuous cycling between these forms is important for its functions. In addition, we found that Alp41 interacts with Alp1~D, the orthologue of cofactor D, specifically when in the GDP-bound form. Intriguingly, Alp1~D colocalizes with microtubules when in excess, eventually leading to depolymerization, which is sequestered by co-overproducing GDP-bound Alp41. We present a model of the final stages of the tubulin cofactor pathway that includes a dual role for both Tbc1 and Alp1~D in opposing regulation of the microtubule.
机译:提供适量的正确折叠的α/β-微管蛋白异二聚体对于微管动力学至关重要。具有装配能力的异二聚体的形成在分子水平上非常复杂,其中α-和β-微管蛋白以分子伴侣依赖性的方式分别加工。该连续步骤是通过微管蛋白折叠辅因子途径进行的,该途径包括一组特定的调节蛋白:辅因子A-E。我们确定了裂变酵母辅因子:辅因子C,Tbc1的直系同源物。除了在微管蛋白折叠中的作用外,Tbc1还充当调节Alp41 / Arl2(高度保守的小GTP酶)的GAP。有趣的是,结合GDP或GTP的Alp41的表达显示出相同的微管损失表型,表明这些形式之间的连续循环对其功能很重要。此外,我们发现Alp41与辅因子D的直向同源物Alp1〜D相互作用,特别是在GDP结合形式下。有趣的是,Alp1〜D在过量时会与微管共定位,最终导致解聚,这是由于共同生产过量的GDP约束的Alp41所致。我们提出了微管蛋白辅因子途径的最终阶段的模型,该模型包括Tbc1和Alp1〜D在微管的相反调控中的双重作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号