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NuSAP, a Mitotic RanGTP Target That Stabilizes and Cross-links Microtubules

机译:NuSAP,一种有丝分裂RanGTP靶标,可稳定并交叉连接微管

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摘要

Nucleolar and spindle-associated protein (NuSAP) was recently identified as a microtubule- and chromatin-binding protein in vertebrates that is nuclear during interphase. Small interfering RNA-mediated depletion of NuSAP resulted in aberrant spindle formation, missegregation of chromosomes, and ultimately blocked cell proliferation. We show here that NuSAP is enriched on chromatin-proximal microtubules at meiotic spindles in Xenopus oocytes. When added at higher than physiological levels to Xenopus egg extract, NuSAP induces extensive bundling of spindle microtubules and causes bundled microtubules within spindle-like structures to become longer. In vitro reconstitution experiments reveal two direct effects of NuSAP on microtubules: first, it can efficiently stabilize microtubules against depolymerization, and second, it can cross-link large numbers of microtubules into aster-like structures, thick fibers, and networks. With defined components we show that the activity of NuSAP is differentially regulated by Importin (Imp) α, Impβ, and Imp7. While Impα and Imp7 appear to block the microtubule-stabilizing activity of NuSAP, Impβ specifically suppresses aspects of the cross-linking activity of NuSAP. We propose that to achieve full NuSAP functionality at the spindle, all three importins must be dissociated by RanGTP. Once activated, NuSAP may aid to maintain spindle integrity by stabilizing and cross-linking microtubules around chromatin.
机译:核仁和纺锤体相关蛋白(NuSAP)最近被鉴定为脊椎动物的微管和染色质结合蛋白,在相间期是有核的。 RNA介导的NuSAP的小干扰耗竭会导致纺锤体异常形成,染色体错聚并最终阻止细胞增殖。我们在这里显示,NuSAP在非洲爪蟾卵母细胞的减数分裂纺锤体上富集在染色质近端微管上。当在非洲爪蟾卵提取物中以高于生理水平的浓度添加时,NuSAP会引起纺锤体微管的大量束缚,并使纺锤状结构内的束缚微管变得更长。体外重建实验揭示了NuSAP对微管的两个直接作用:首先,它可以有效地稳定微管以防止解聚,其次,它可以将大量微管交联为紫翠星状结构,粗纤维和网络。使用已定义的组件,我们显示NuSAP的活性受Importin(Imp)α,Impβ和Imp7差异调节。虽然Impα和Imp7似乎阻止了NuSAP的微管稳定活性,但Impβ特异地抑制了NuSAP交联活性的各个方面。我们建议要在主轴上实现完整的NuSAP功能,必须通过RanGTP解除所有三个importins的关联。一旦激活,NuSAP可通过稳定和交联染色质周围的微管来帮助维持纺锤体的完整性。

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