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动粒DASH复合体的遗传分析揭示了其与ras/蛋白激酶A途径的拮抗关系以及Ask1结合所需的一个新亚基。

Genetic analysis of the kinetochore DASH complex reveals an antagonistic relationship with the ras/protein kinase A pathway and a novel subunit required for Ask1 association.

作者信息

Li Ju-mei, Li Yumei, Elledge Stephen J

机构信息

Harvard Medical School, 77 Ave. Louis Pasteur, Boston, MA 02115, USA.

出版信息

Mol Cell Biol. 2005 Jan;25(2):767-78. doi: 10.1128/MCB.25.2.767-778.2005.

Abstract

DASH is a microtubule- and kinetochore-associated complex required for proper chromosome segregation and bipolar attachment of sister chromatids on the mitotic spindle. We have undertaken a genetic and biochemical analysis of the DASH complex and uncovered a strong genetic interaction of DASH with the Ras/protein kinase A (PKA) pathway. Overexpression of PDE2 or deletion of RAS2 rescued the temperature sensitivity of ask1-3 mutants. Ras2 negatively regulates DASH through the PKA pathway. Constitutive PKA activity caused by mutation of the negative regulator BCY1 is toxic to DASH mutants such as ask1 and dam1. In addition, we have discovered two novel subunits of DASH, Hsk2 and Hsk3 (helper of Ask1), which are microproteins of fewer than 75 amino acids, as dosage suppressors of ask1 mutants. These are essential genes that colocalize with DASH components on spindles and kinetochores and are present in the DASH complex. Mutants in hsk3 arrest cells in mitosis with short spindles and broken spindle structures characteristic of other DASH mutants. Hsk3 is critical for the integrity of the DASH complex because in hsk3 mutants the association of Dam1, Duo1, Spc34, and Spc19 with Ask1 is greatly diminished. We propose that Hsk3 acts to incorporate Ask1 into the DASH complex.

摘要

DASH是一种与微管和动粒相关的复合体,对于有丝分裂纺锤体上姐妹染色单体的正确染色体分离和双极附着是必需的。我们对DASH复合体进行了遗传和生化分析,发现DASH与Ras/蛋白激酶A(PKA)途径存在强烈的遗传相互作用。PDE2的过表达或RAS2的缺失挽救了ask1 - 3突变体的温度敏感性。Ras2通过PKA途径负向调节DASH。由负调节因子BCY1突变引起的组成型PKA活性对ask1和dam1等DASH突变体有毒性。此外,我们发现了DASH的两个新亚基Hsk2和Hsk3(Ask1的辅助蛋白),它们是氨基酸少于75个的微蛋白,作为ask1突变体的剂量抑制因子。这些是在纺锤体和动粒上与DASH组分共定位且存在于DASH复合体中的必需基因。hsk3突变体使细胞在有丝分裂中停滞,纺锤体短且具有其他DASH突变体特有的纺锤体结构破坏。Hsk3对DASH复合体的完整性至关重要,因为在hsk3突变体中,Dam1、Duo1、Spc34和Spc19与Ask1的结合大大减少。我们提出Hsk3的作用是将Ask1整合到DASH复合体中。

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