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中心体CAP350蛋白可稳定与高尔基体复合物相关的微管。

Centrosomal CAP350 protein stabilises microtubules associated with the Golgi complex.

作者信息

Hoppeler-Lebel Aurélie, Celati Claude, Bellett Gemma, Mogensen Mette M, Klein-Hitpass Ludger, Bornens Michel, Tassin Anne-Marie

机构信息

Institut Curie, Section Recherche, UMR144-CNRS, 75248 Paris CEDEX, France.

出版信息

J Cell Sci. 2007 Sep 15;120(Pt 18):3299-308. doi: 10.1242/jcs.013102.

Abstract

A comprehensive model of how the centrosome organises the microtubule network in animal cells has not yet been elucidated. Here we show that the centrosomal large CAP-Gly protein CAP350 is not only present at the centrosome, but is also present as numerous dots in the pericentrosomal area. Using in vitro and in vivo expression of partial constructs, we demonstrated that CAP350 binds microtubules through an N-terminal basic region rather than through its CAP-Gly domain. CAP-Gly-containing domains of CAP350 are targeted not only to the centrosome but also to a Golgi-like network. Interestingly, full-length GFP-tagged CAP350 bound preferentially to microtubules in the pericentrosomal area. These results indicate that the large CAP350 protein has a dual binding ability. Overexpression of CAP350 promoted an increase in the stability of the whole microtubule network, as judged by a significant decrease in the number of EB1 comets and by an enhanced microtubule resistance to Nocodazole treatment. In support of this, CAP350 depletion decreased microtubule stability. Moreover, both depletion and overexpression of CAP350 induced specific fragmentation of the Golgi complex while maintaining a juxtanuclear localisation. We propose that CAP350 specifically stabilises Golgi-associated microtubules and in this way participates in the maintenance of a continuous pericentrosomal Golgi ribbon.

摘要

关于中心体如何在动物细胞中组织微管网络的全面模型尚未阐明。在此我们表明,中心体的大型CAP - Gly蛋白CAP350不仅存在于中心体,在中心体周围区域也以众多点状形式存在。通过部分构建体的体外和体内表达,我们证明CAP350通过其N端碱性区域而非CAP - Gly结构域与微管结合。CAP350含CAP - Gly的结构域不仅靶向中心体,还靶向类似高尔基体的网络。有趣的是,全长绿色荧光蛋白标记的CAP350优先与中心体周围区域的微管结合。这些结果表明大型CAP350蛋白具有双重结合能力。通过EB1彗星数量的显著减少以及微管对诺考达唑处理抗性的增强判断,CAP350的过表达促进了整个微管网络稳定性的增加。与此相符,CAP350的缺失降低了微管稳定性。此外,CAP350的缺失和过表达均诱导高尔基体复合物的特异性碎片化,同时保持近核定位。我们提出CAP350特异性地稳定与高尔基体相关的微管,并以此方式参与维持连续的中心体周围高尔基体带。

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