Brunet Stéphane, Sardon Teresa, Zimmerman Timo, Wittmann Torsten, Pepperkok Rainer, Karsenti Eric, Vernos Isabelle
Cell Biology and Biophysics Program, European Molecular Biology Laboratory, Heidelberg 69 117, Germany.
Mol Biol Cell. 2004 Dec;15(12):5318-28. doi: 10.1091/mbc.e04-05-0385. Epub 2004 Sep 22.
TPX2 has multiple functions during mitosis, including microtubule nucleation around the chromosomes and the targeting of Xklp2 and Aurora A to the spindle. We have performed a detailed domain functional analysis of TPX2 and found that a large N-terminal domain containing the Aurora A binding peptide interacts directly with and nucleates microtubules in pure tubulin solutions. However, it cannot substitute the endogenous TPX2 to support microtubule nucleation in response to Ran guanosine triphosphate (GTP) and spindle assembly in egg extracts. By contrast, a large C-terminal domain of TPX2 that does not bind directly to pure microtubules and does not bind Aurora A kinase rescues microtubule nucleation in response to RanGTP and spindle assembly in TPX2-depleted extract. These and previous results suggest that under physiological conditions, TPX2 is essential for microtubule nucleation around chromatin and functions in a network of other molecules, some of which also are regulated by RanGTP.
TPX2在有丝分裂过程中具有多种功能,包括在染色体周围进行微管成核以及将Xklp2和极光激酶A靶向纺锤体。我们对TPX2进行了详细的结构域功能分析,发现包含极光激酶A结合肽的大的N端结构域在纯微管蛋白溶液中直接与微管相互作用并使其成核。然而,它不能替代内源性TPX2来支持响应于Ran鸟苷三磷酸(GTP)的微管成核以及卵提取物中的纺锤体组装。相比之下,TPX2的一个大的C端结构域不直接结合纯微管且不结合极光激酶A,却能在TPX2缺失的提取物中响应RanGTP拯救微管成核和纺锤体组装。这些以及之前的结果表明,在生理条件下,TPX2对于染色质周围的微管成核至关重要,并在其他分子网络中发挥作用,其中一些分子也受RanGTP调节。