首页> 外文期刊>Journal of cell biology >Functional cooperation of Dam1, Ipl1, and the inner centromere protein (INCENP)–related protein Sli15 during chromosome segregation
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Functional cooperation of Dam1, Ipl1, and the inner centromere protein (INCENP)–related protein Sli15 during chromosome segregation

机译:Dam1,Ipl1和内部着丝粒蛋白(INCENP)相关蛋白Sli15在染色体分离过程中的功能合作

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We have shown previously that Ipl1 and Sli15 are required for chromosome segregation in Saccharomyces cerevisiae . Sli15 associates directly with the Ipl1 protein kinase and these two proteins colocalize to the mitotic spindle. We show here that Sli15 stimulates the in vitro, and likely in vivo, kinase activity of Ipl1, and Sli15 facilitates the association of Ipl1 with the mitotic spindle. The Ipl1-binding and -stimulating activities of Sli15 both reside within a region containing homology to the metazoan inner centromere protein (INCENP). Ipl1 and Sli15 also bind to Dam1, a microtubule-binding protein required for mitotic spindle integrity and kinetochore function. Sli15 and Dam1 are most likely physiological targets of Ipl1 since Ipl1 can phosphorylate both proteins efficiently in vitro, and the in vivo phosphorylation of both proteins is reduced in ipl1 mutants. Some dam1 mutations exacerbate the phenotype of ipl1 and sli15 mutants, thus providing evidence that Dam1 interactions with Ipl1–Sli15 are functionally important in vivo. Similar to Dam1, Ipl1 and Sli15 each bind to microtubules directly in vitro, and they are associated with yeast centromeric DNA in vivo. Given their dual association with microtubules and kinetochores, Ipl1, Sli15, and Dam1 may play crucial roles in regulating chromosome–spindle interactions or in the movement of kinetochores along microtubules.
机译:我们先前已经证明,酿酒酵母中的染色体分离需要Ipl1和Sli15。 Sli15与Ipl1蛋白激酶直接缔合,这两个蛋白共定位于有丝分裂纺锤体。我们在这里显示Sli15刺激了Ipl1的体外和可能的体内激酶活性,而Sli15促进了Ipl1与有丝分裂纺锤体的缔合。 Sli15的Ipl1结合和刺激活性均位于与后生动物内部着丝粒蛋白(INCENP)同源的区域内。 Ipl1和Sli15还与Dam1结合,Dam1是有丝分裂纺锤体完整性和动粒功能所需的微管结合蛋白。 Sli15和Dam1最可能是Ipl1的生理靶标,因为Ipl1可以在体外有效地磷酸化这两种蛋白质,并且在ipl1突变体中两种蛋白质的体内磷酸化作用都降低了。某些dam1突变加剧了ipl1和sli15突变体的表型,因此提供了证据,表明Dam1与Ipl1-Sli15的相互作用在体内具有重要的功能。与Dam1相似,Ipl1和Sli15分别直接在体外与微管结合,并且在体内与酵母着丝粒DNA结合。鉴于它们与微管和动植物的双重关联,Ipl1,Sli15和Dam1可能在调节染色体-纺锤体相互作用或动植物沿微管的运动中起关键作用。

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