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Fission yeast MOZART1/Mzt1 is an essential γ-tubulin complex component required for complex recruitment to the microtubule organizing center, but not its assembly

机译:裂变酵母MOZART1 / Mzt1是复合物募集到微管组织中心所需的必不可少的γ-微管蛋白复合物,但不是其组装体

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摘要

γ-Tubulin plays a universal role in microtubule nucleation from microtubule organizing centers (MTOCs) such as the animal centrosome and fungal spindle pole body (SPB). γ-Tubulin functions as a multiprotein complex called the γ-tubulin complex (γ-TuC), consisting of GCP1–6 (GCP1 is γ-tubulin). In fungi and flies, it has been shown that GCP1–3 are core components, as they are indispensable for γ-TuC complex assembly and cell division, whereas the other three GCPs are not. Recently a novel conserved component, MOZART1, was identified in humans and plants, but its precise functions remain to be determined. In this paper, we characterize the fission yeast homologue Mzt1, showing that it is essential for cell viability. Mzt1 is present in approximately equal stoichiometry with Alp4/GCP2 and localizes to all the MTOCs, including the SPB and interphase and equatorial MTOCs. Temperature-sensitive mzt1 mutants display varying degrees of compromised microtubule organization, exhibiting multiple defects during both interphase and mitosis. Mzt1 is required for γ-TuC recruitment, but not sufficient to localize to the SPB, which depends on γ-TuC integrity. Intriguingly, the core γ-TuC assembles in the absence of Mzt1. Mzt1 therefore plays a unique role within the γ-TuC components in attachment of this complex to the major MTOC site.
机译:γ-微管蛋白在微管组织中心(MTOC)(如动物中心体和真菌纺锤体)(SPB)的微管成核中起着普遍作用。 γ-管蛋白起着称为γ-微管蛋白复合物(γ-TuC)的多蛋白复合物的作用,由GCP1-6(GCP1是γ-微管蛋白)组成。在真菌和果蝇中,已证明GCP1-3是核心成分,因为它们对于γ-TuC复杂的组装和细胞分裂是必不可少的,而其他三个GCP则不是。最近,在人类和植物中发现了一种新颖的保守成分MOZART1,但其确切功能尚待确定。在本文中,我们表征了裂变酵母同系物Mzt1,表明它对细胞活力至关重要。 Mzt1的化学计量与Alp4 / GCP2大致相等,并且存在于所有MTOC(包括SPB,相间和赤道MTOC)中。对温度敏感的mzt1突变体显示出不同程度的受损微管组织,在相间和有丝分裂期间均表现出多个缺陷。 Mzt1是招募γ-TuC所必需的,但不足以定位到SPB,这取决于γ-TuC的完整性。有趣的是,在没有Mzt1的情况下,核心γ-TuC会组装。因此,Mzt1在该复合物与主要MTOC部位的连接中在γ-TuC组分中起着独特的作用。

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