Li Yumei, Bachant Jeff, Alcasabas Annette A, Wang Yanchang, Qin Jun, Elledge Stephen J
Verna and Marrs McLean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, Texas 77030, USA.
Genes Dev. 2002 Jan 15;16(2):183-97. doi: 10.1101/gad.959402.
A role for the mitotic spindle in the maturation of the kinetochore has not been defined previously. Here we describe the isolation of a novel and conserved essential gene, ASK1, from Saccharomyces cerevisiae involved in this process. ask1 mutants display either G(2)/M arrest or segregation of DNA masses without the separation of sister chromatids, resulting in massive nondisjunction and broken spindles. Ask1 localizes along mitotic spindles and to kinetochores, and cross-links to centromeric DNA. Microtubules are required for Ask1 binding to kinetochores, and are partially required to maintain its association. We found Ask1 is part of a multisubunit complex, DASH, that contains approximately 10 components, including several proteins essential for mitosis including Dam1, Duo1, Spc34, Spc19, and Hsk1. The Ipl1 kinase controls the phosphorylation of Dam1 in the DASH complex and may regulate its function. We propose that DASH is a microtubule-binding complex that is transferred to the kinetochore prior to mitosis, thereby defining a new step in kinetochore maturation.
有丝分裂纺锤体在动粒成熟过程中的作用此前尚未明确。在此,我们描述了从酿酒酵母中分离出的一个新的保守必需基因ASK1,它参与了这一过程。ask1突变体表现出G(2)/M期阻滞或DNA团块分离但姐妹染色单体未分开,导致大量染色体不分离和纺锤体断裂。Ask1定位于有丝分裂纺锤体以及动粒,并与着丝粒DNA交联。微管是Ask1与动粒结合所必需的,并且部分参与维持其结合。我们发现Ask1是一个多亚基复合物DASH的一部分,该复合物包含约10个组分,包括几种有丝分裂必需蛋白,如Dam1、Duo1、Spc34、Spc19和Hsk1。Ipl1激酶控制DASH复合物中Dam1的磷酸化,并可能调节其功能。我们提出DASH是一种微管结合复合物,在有丝分裂前转移至动粒,从而定义了动粒成熟的一个新步骤。