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在非洲爪蟾无细胞体系提取物中形成强大纺锤体需要腺瘤性结肠息肉病蛋白。

The adenomatous polyposis coli protein is required for the formation of robust spindles formed in CSF Xenopus extracts.

作者信息

Dikovskaya Dina, Newton Ian P, Näthke Inke S

机构信息

Division of Cell and Developmental Biology, University of Dundee, WTB/MSI Complex, Dundee DD1 5EH, Scotland.

出版信息

Mol Biol Cell. 2004 Jun;15(6):2978-91. doi: 10.1091/mbc.e03-08-0613. Epub 2004 Apr 9.

Abstract

Mutations in the adenomatous polyposis coli (APC) protein occur early in colon cancer and correlate with chromosomal instability. Here, we show that depletion of APC from cystostatic factor (CSF) Xenopus extracts leads to a decrease in microtubule density and changes in tubulin distribution in spindles and asters formed in such extracts. Addition of full-length APC protein or a large, N-terminally truncated APC fragment to APC-depleted extracts restored normal spindle morphology and the intact microtubule-binding site of APC was necessary for this rescue. These data indicate that the APC protein plays a role in the formation of spindles that is dependent on its effect on microtubules. Spindles formed in cycled extracts were not sensitive to APC depletion. In CSF extracts, spindles predominantly formed from aster-like intermediates, whereas in cycled extracts chromatin was the major site of initial microtubule polymerization. These data suggest that APC is important for centrosomally driven spindle formation, which was confirmed by our finding that APC depletion reduced the size of asters nucleated from isolated centrosomes. We propose that lack of microtubule binding in cancer-associated mutations of APC may contribute to defects in the assembly of mitotic spindles and lead to missegregation of chromosomes.

摘要

腺瘤性息肉病大肠杆菌(APC)蛋白的突变在结肠癌发生早期出现,并与染色体不稳定性相关。在此,我们表明,从抑制卵裂因子(CSF)非洲爪蟾提取物中去除APC会导致微管密度降低,以及在此类提取物中形成的纺锤体和星状体中微管蛋白分布发生变化。向去除APC的提取物中添加全长APC蛋白或一个大的、N端截短的APC片段可恢复正常的纺锤体形态,且APC完整的微管结合位点对于这种挽救是必需的。这些数据表明,APC蛋白在纺锤体形成中发挥作用,这取决于其对微管的影响。在循环提取物中形成的纺锤体对APC去除不敏感。在CSF提取物中,纺锤体主要由星状体样中间体形成,而在循环提取物中,染色质是初始微管聚合的主要位点。这些数据表明,APC对于中心体驱动的纺锤体形成很重要,我们发现去除APC会减小从分离中心体形成的星状体大小,这证实了这一点。我们提出,APC癌症相关突变中缺乏微管结合可能导致有丝分裂纺锤体组装缺陷,并导致染色体错误分离。

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