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RAB6C 是一个反基因,编码一种参与细胞周期进程的中心体蛋白。

RAB6C is a retrogene that encodes a centrosomal protein involved in cell cycle progression.

机构信息

Molecular Mechanisms of Intracellular Transport, CNRS, UMR144, Institut Curie, 26 rue d'Ulm, 75248 Paris Cedex 05, France.

出版信息

J Mol Biol. 2010 Mar 19;397(1):69-88. doi: 10.1016/j.jmb.2010.01.009. Epub 2010 Jan 11.

Abstract

Rab-GTPases are key regulators of membrane transport, and growing evidence indicates that their expression levels are altered in certain human malignancies, including cancer. Rab6C, a newly identified Rab6 subfamily member, has attracted recent attention because its reduced expression might confer a selective advantage to drug-resistant breast cancer cells. Here, we report that RAB6C is a primate-specific retrogene derived from a RAB6A' transcript. RAB6C is transcribed in a limited number of human tissues including brain, testis, prostate, and breast. Endogenous Rab6C is considerably less abundant and has a much shorter half-life than Rab6A'. Comparison of the GTP-binding motifs of Rab6C and Rab6A', homology modeling, and GTP-blot overlay assays indicate that amino acid changes in Rab6C have greatly reduced its GTP-binding affinity. Instead, the noncanonical GTP-binding domain of Rab6C mediates localization of the protein to the centrosome. Overexpression of Rab6C results in G1 arrest, and its specific depletion generates tetraploid cells with supernumerary centrosomes, revealing a role of Rab6C in events related to the centrosome and cell cycle progression. Thus, RAB6C is a rare example of a recently emerged retrogene that has acquired the status of a new gene, encoding a functional protein with altered characteristics compared to Rab6A'.

摘要

Rab-GTPases 是膜转运的关键调节剂,越来越多的证据表明,它们的表达水平在某些人类恶性肿瘤中发生了改变,包括癌症。Rab6C 是一个新鉴定的 Rab6 亚家族成员,最近引起了关注,因为其表达水平的降低可能为耐药乳腺癌细胞赋予选择性优势。在这里,我们报告 RAB6C 是一种源自 RAB6A'转录本的灵长类特异性返座基因。RAB6C 在包括大脑、睾丸、前列腺和乳房在内的少数人类组织中转录。内源性 Rab6C 的丰度明显低于 Rab6A',半衰期也短得多。对 Rab6C 和 Rab6A'的 GTP 结合基序进行比较、同源建模和 GTP 印迹覆盖分析表明,Rab6C 中的氨基酸变化极大地降低了其 GTP 结合亲和力。相反,Rab6C 的非典型 GTP 结合结构域介导了该蛋白向中心体的定位。Rab6C 的过表达导致 G1 期停滞,其特异性耗竭会产生具有多余中心体的四倍体细胞,揭示了 Rab6C 在与中心体和细胞周期进展相关的事件中的作用。因此,RAB6C 是一个罕见的新兴返座基因的例子,它已经获得了新基因的地位,编码一种与 Rab6A'相比具有改变特征的功能性蛋白。

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