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纺锤体两极的不对称中心体数量导致癌症中的染色体错误分离。

Asymmetric Centriole Numbers at Spindle Poles Cause Chromosome Missegregation in Cancer.

机构信息

Clinical Cooperation Unit Molecular Hematology/Oncology, German Cancer Research Center (DKFZ) and Department of Internal Medicine V, University of Heidelberg, 69120 Heidelberg, Germany.

Cell Biology and Biophysics Unit, European Molecular Biology Laboratory (EMBL), 69117 Heidelberg, Germany.

出版信息

Cell Rep. 2017 Aug 22;20(8):1906-1920. doi: 10.1016/j.celrep.2017.08.005.

Abstract

Chromosomal instability is a hallmark of cancer and correlates with the presence of extra centrosomes, which originate from centriole overduplication. Overduplicated centrioles lead to the formation of centriole rosettes, which mature into supernumerary centrosomes in the subsequent cell cycle. While extra centrosomes promote chromosome missegregation by clustering into pseudo-bipolar spindles, the contribution of centriole rosettes to chromosome missegregation is unknown. We used multi-modal imaging of cells with conditional centriole overduplication to show that mitotic rosettes in bipolar spindles frequently harbor unequal centriole numbers, leading to biased chromosome capture that favors binding to the prominent pole. This results in chromosome missegregation and aneuploidy. Rosette mitoses lead to viable offspring and significantly contribute to progeny production. We further show that centrosome abnormalities in primary human malignancies frequently consist of centriole rosettes. As asymmetric centriole rosettes generate mitotic errors that can be propagated, rosette mitoses are sufficient to cause chromosome missegregation in cancer.

摘要

染色体不稳定性是癌症的一个标志,与额外中心体的存在相关,这些中心体源自中心粒的过度复制。过度复制的中心粒会导致中心粒玫瑰花结的形成,这些中心粒玫瑰花结在随后的细胞周期中成熟为多余的中心体。虽然额外的中心体通过聚集形成伪两极纺锤体促进染色体错误分离,但中心粒玫瑰花结对染色体错误分离的贡献尚不清楚。我们使用具有条件中心粒过度复制的细胞的多模式成像表明,在两极纺锤体中的有丝分裂玫瑰花结中经常存在不等的中心粒数量,导致偏向性染色体捕获,有利于与明显的极结合。这导致染色体错误分离和非整倍体。玫瑰花结有丝分裂导致有活力的后代,并对后代的产生有重要贡献。我们进一步表明,原发性人类恶性肿瘤中的中心体异常经常由中心粒玫瑰花结组成。由于不对称的中心粒玫瑰花结产生可传播的有丝分裂错误,因此玫瑰花结有丝分裂足以在癌症中导致染色体错误分离。

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