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Function and Assembly of DNA Looping, Clustering, and Microtubule Attachment Complexes within a Eukaryotic Kinetochore

机译:真核动粒内DNA环化,聚类和微管附着复合物的功能和组装。

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The kinetochore is a complex protein–DNA assembly that provides the mechanical linkage between microtubules and the centromere DNA of each chromosome. Centromere DNA in all eukaryotes is wrapped around a unique nucleosome that contains the histone H3 variant CENP-A (Cse4p in Saccharomyces cerevisiae ). Here, we report that the inner kinetochore complex (CBF3) is required for pericentric DNA looping at the Cse4p-containing nucleosome. DNA within the pericentric loop occupies a spatially confined area that is radially displaced from the interpolar central spindle. Microtubule-binding kinetochore complexes are not involved in pericentric DNA looping but are required for the geometric organization of DNA loops around the spindle microtubules in metaphase. Thus, the mitotic segregation apparatus is a composite structure composed of kinetochore and interpolar microtubules, the kinetochore, and organized pericentric DNA loops. The linkage of microtubule-binding to centromere DNA-looping complexes positions the pericentric chromatin loops and stabilizes the dynamic properties of individual kinetochore complexes in mitosis.
机译:线粒体是复杂的蛋白质-DNA组件,可在微管和每个染色体的着丝粒DNA之间提供机械连接。所有真核生物中的着丝粒DNA包裹在一个独特的核小体上,该核小体包含组蛋白H3变体CENP-A(酿酒酵母中的Cse4p)。在这里,我们报告内部的线粒体复合物(CBF3)是在包含Cse4p的核小体的周围DNA环化所必需的。周缘环内的DNA占据了一个空间受限的区域,该区域从极间中心纺锤径向移位。微管结合动酶复合体不参与周围的DNA环,但在中期是纺锤体微管周围的DNA环的几何组织所必需的。因此,有丝分裂分离装置是由动粒和极间微管,动粒和有组织的周围DNA环组成的复合结构。微管结合与着丝粒DNA环复合物的联系定位了外周中心染色质环,并稳定了有丝分裂中单个动粒复合物的动力学特性。

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