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哺乳动物染色体的动粒:正常有丝分裂和非整倍体中的结构与功能

The kinetochore of mammalian chromosomes: structure and function in normal mitosis and aneuploidy.

作者信息

Brinkley B R, Tousson A, Valdivia M M

出版信息

Basic Life Sci. 1985;36:243-67. doi: 10.1007/978-1-4613-2127-9_16.

Abstract

The kinetochore is a structurally differentiated site on mitotic chromosomes to which spindle microtubules (MTs) are attached. In mammalian cells, the kinetochore is organized into a trilamellar plate and is morphologically distinct from the centromere. Although kinetochores and centromeres are morphologically and biochemically distinct regions, they are functionally linked and necessary for normal chromosome movement and segregation. Recent biochemical and immunocytochemical studies suggest that the kinetochore is composed of several polypeptides, DNA, and possibly RNA. The kinetochore plates are composed of tubulin and two antigens of 17 Kd and 80 Kd, as detected by scleroderma CREST antiserum. Colcemid, a MT inhibitor, also causes reversible rearrangements of kinetochore structure. Mitomycin C binds to heterochromatin and causes the trilamellar plates to become detached from the chromosome. Diethylstilbestrol (DES), a synthetic estrogen, inhibits mitosis in mammalian cells and causes chromosome lagging or malorientation during recovery. Electron microscopy indicates that DES causes disruption of the mitotic spindle, centriole elongation, and unusual chromosome associations due to interkinetochore microtubules. No apparent damage to kinetochores was noted in lagging or maloriented chromosomes.

摘要

动粒是有丝分裂染色体上结构分化的位点,纺锤体微管(MTs)附着于此。在哺乳动物细胞中,动粒被组织成三层板状结构,在形态上与着丝粒不同。尽管动粒和着丝粒在形态和生化方面是不同的区域,但它们在功能上相互联系,对于正常染色体的移动和分离是必需的。最近的生化和免疫细胞化学研究表明,动粒由几种多肽、DNA以及可能的RNA组成。用硬皮病CREST抗血清检测发现,动粒板由微管蛋白以及17Kd和80Kd的两种抗原组成。秋水仙酰胺,一种微管抑制剂,也会导致动粒结构的可逆重排。丝裂霉素C与异染色质结合,使三层板与染色体分离。己烯雌酚(DES),一种合成雌激素,抑制哺乳动物细胞的有丝分裂,并在恢复过程中导致染色体滞后或定向错误。电子显微镜显示,DES会导致有丝分裂纺锤体破坏、中心粒伸长以及由于动粒间微管而出现异常的染色体关联。在滞后或定向错误的染色体中未发现动粒有明显损伤。

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