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着丝粒蛋白E的动粒结合结构域的特性揭示了其与动粒蛋白CENP-F和hBUBR1的相互作用。

Characterization of the kinetochore binding domain of CENP-E reveals interactions with the kinetochore proteins CENP-F and hBUBR1.

作者信息

Chan G K, Schaar B T, Yen T J

机构信息

Institute for Cancer Research, Fox Chase Cancer Center, Philadelphia, Pennsylvania 19111, USA.

出版信息

J Cell Biol. 1998 Oct 5;143(1):49-63. doi: 10.1083/jcb.143.1.49.

Abstract

We have identified a 350-amino acid domain in the kinetochore motor CENP-E that specifies kinetochore binding in mitosis but not during interphase. The kinetochore binding domain was used in a yeast two-hybrid screen to isolate interacting proteins that included the kinetochore proteins CENP-E, CENP-F, and hBUBR1, a BUB1-related kinase that was found to be mutated in some colorectal carcinomas (Cahill, D.P., C. Lengauer, J. Yu, G.J. Riggins, J.K. Wilson, S.D. Markowitz, K.W. Kinzler, and B. Vogelstein. 1998. Nature. 392:300-303). CENP-F, hBUBR1, and CENP-E assembled onto kinetochores in sequential order during late stages of the cell cycle. These proteins therefore define discrete steps along the kinetochore assembly pathway. Kinetochores of unaligned chromosome exhibited stronger hBUBR1 and CENP-E staining than those of aligned chromosomes. CENP-E and hBUBR1 remain colocalized at kinetochores until mid-anaphase when hBUBR1 localized to portions of the spindle midzone that did not overlap with CENP-E. As CENP-E and hBUBR1 can coimmunoprecipitate with each other from HeLa cells, they may function as a motor-kinase complex at kinetochores. However, the complex distribution pattern of hBUBR1 suggests that it may regulate multiple functions that include the kinetochore and the spindle midzone.

摘要

我们在动粒马达蛋白CENP-E中鉴定出一个350个氨基酸的结构域,该结构域在有丝分裂期间而非间期指定动粒结合。利用该动粒结合结构域进行酵母双杂交筛选,以分离相互作用蛋白,其中包括动粒蛋白CENP-E、CENP-F和hBUBR1,hBUBR1是一种与BUB1相关的激酶,在某些结直肠癌中发生了突变(Cahill, D.P., C. Lengauer, J. Yu, G.J. Riggins, J.K. Wilson, S.D. Markowitz, K.W. Kinzler, and B. Vogelstein. 1998. Nature. 392:300 - 303)。在细胞周期后期,CENP-F、hBUBR1和CENP-E按顺序组装到动粒上。因此,这些蛋白定义了动粒组装途径上的离散步骤。未对齐染色体的动粒比对齐染色体的动粒表现出更强的hBUBR1和CENP-E染色。CENP-E和hBUBR1在动粒处保持共定位,直到中期,此时hBUBR1定位于纺锤体中区的部分区域,该区域与CENP-E不重叠。由于CENP-E和hBUBR1可以从HeLa细胞中相互免疫共沉淀,它们可能在动粒处作为马达-激酶复合物发挥作用。然而,hBUBR1的复杂分布模式表明它可能调节多种功能,包括动粒和纺锤体中区。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cba2/2132809/2b0027be9ad1/JCB9803129.f1a.jpg

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