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首页> 外文期刊>Molecular biology of the cell >gamma-tubulin is required for proper recruitment and assembly of Kar9-Bim1 complexes in budding yeast
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gamma-tubulin is required for proper recruitment and assembly of Kar9-Bim1 complexes in budding yeast

机译:γ-微管蛋白对于在酵母中正确募集和组装Kar9-Bim1复合物是必需的

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摘要

Microtubule plus-end-interacting proteins (+TIPs) promote the dynamic interactions between the plus ends (+ends) of astral microtubules and cortical actin that are required for preanaphase spindle positioning. Paradoxically, +TIPs such as the EB1 orthologue Bim1 and Kar9 also associate with spindle pole bodies (SPBs), the centrosome equivalent in budding yeast. Here, we show that deletion of four C-terminal residues of the budding yeast gamma-tubulin Tub4 (tub4-Delta dsyl) perturbs Bim1 and Kar9 localization to SPBs and Kar9-dependant spindle positioning. Surprisingly, we find Kar9 localizes to microtubule +ends in tub4-Delta dsyl cells, but these microtubules fail to position the spindle when targeted to the bud. Using cofluorescence and coaffinity purification, we show Kar9 complexes in tub4-Delta dsyl cells contain reduced levels of Bim1. Astral microtubule dynamics is suppressed in tub4-Delta dsyl cells, but it are restored by deletion of Kar9. Moreover, Myo2- and F-actin-dependent dwelling of Kar9 in the bud is observed in tub4-Delta dsyl cells, suggesting defective Kar9 complexes tether microtubule +ends to the cortex. Overproduction of Bim1, but not Kar9, restores Kar9-dependent spindle positioning in the tub4-Delta dsyl mutant, reduces cortical dwelling, and promotes Bim1-Kar9 interactions. We propose that SPBs, via the tail of Tub4, promote the assembly of functional +TIP complexes before their deployment to microtubule +ends.
机译:微管正端相互作用蛋白(+ TIP)促进星形前微管正向定位所需的星状微管正端(+端)和皮质肌动蛋白之间的动态相互作用。矛盾的是,诸如EB1直向同源物Bim1和Kar9之类的+ TIP也与纺锤极体(SPB)相关,纺锤体中的质体等同物。在这里,我们显示出芽芽的酵母γ-微管蛋白Tub4(tub4-Delta dsyl)的四个C末端残基的扰动Bim1和Kar9本地化到SPB和Kar9依赖性纺锤定位。出乎意料的是,我们发现Kar9定位于tub4-Delta dsyl细胞中的微管+末端,但是当靶向芽时,这些微管无法定位纺锤体。使用共荧光和亲和纯化,我们显示tub4-Delta dsyl细胞中的Kar9复合物含有降低的Bim1水平。在tub4-Delta dsyl细胞中星状微管动力学受到抑制,但通过缺失Kar9可以恢复。此外,在tub4-Delta dsyl细胞中观察到了芽中Kar9的Myo2-和F-肌动蛋白依赖性寄居,表明Kar9复合物有缺陷,系链微管正向皮层末端。 Bim1而不是Kar9的过量生产,恢复了tub4-Delta dsyl突变体中Kar9依赖性的纺锤体定位,减少了皮层的居住,并促进了Bim1-Kar9的相互作用。我们建议,SPB通过Tub4的尾​​部,促进功能性+ TIP复合物的组装,然后再将其部署到微管+末端。

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