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T212位点上的Pak1磷酸化作用影响处于有丝分裂的细胞中的微管。

Pak1 phosphorylation on t212 affects microtubules in cells undergoing mitosis.

作者信息

Banerjee Monisha, Worth Daniel, Prowse David M, Nikolic Margareta

机构信息

Molecular and Developmental Neurobiology MRC Centre, New Hunt's House, King's College London, Guy's Campus, United Kingdom.

出版信息

Curr Biol. 2002 Jul 23;12(14):1233-9. doi: 10.1016/s0960-9822(02)00956-9.

Abstract

The Pak kinases are targets of the Rho GTPases Rac and Cdc42, which regulate cell shape and motility. It is increasingly apparent that part of this function is due to the effect Pak kinases have on microtubule organization and dynamics. Recently, overexpression of Xenopus Pak5 was shown to enhance microtubule stabilization, and it was shown that mammalian Pak1 may inhibit a microtubule-destabilizing protein, Op18/Stathmin. We have identified a specific phosphorylation site on mammalian Pak1, T212, which is targeted by the neuronal p35/Cdk5 kinase. Pak1 phosphorylated on T212, Pak1T212(PO(4)), is enriched in axonal growth cones and colocalizes with small peripheral bundles of microtubules. Cortical neurons overexpressing a Pak1A212 mutant display a tangled neurite morphology, which suggests that the microtubule cytoskeleton is affected. Here, we show that cyclin B1/Cdc2 phosphorylates Pak1 in cells undergoing mitosis. In the developing cortex and in cultured fibroblasts, Pak1T212(PO(4)) is enriched in microtubule-organizing centers and along parts of the spindles. In living cells, a peptide mimicking phosphorylated T212 accumulates at the centrosomes and spindles and causes an increased length of astral microtubules during metaphase or following nocodazole washout. Together these results suggest that similar signaling pathways regulate microtubule dynamics in a remodeling axonal growth cone and during cell division.

摘要

Pak激酶是Rho GTP酶Rac和Cdc42的作用靶点,Rac和Cdc42可调节细胞形状和运动。越来越明显的是,该功能的一部分归因于Pak激酶对微管组织和动力学的影响。最近研究表明,非洲爪蟾Pak5的过表达可增强微管稳定性,并且发现哺乳动物Pak1可能抑制一种微管去稳定蛋白Op18/Stathmin。我们已在哺乳动物Pak1上鉴定出一个特定的磷酸化位点T212,它是神经元p35/Cdk5激酶的作用靶点。在T212位点磷酸化的Pak1(Pak1T212(PO(4)))在轴突生长锥中富集,并与微管的外周小束共定位。过表达Pak1A212突变体的皮层神经元呈现出缠结的神经突形态,这表明微管细胞骨架受到了影响。在此,我们表明细胞周期蛋白B1/Cdc2在有丝分裂细胞中使Pak1磷酸化。在发育中的皮层和培养的成纤维细胞中,Pak1T212(PO(4))在微管组织中心以及纺锤体的部分区域富集。在活细胞中,模拟磷酸化T212的肽在中心体和纺锤体处积累,并在中期或诺考达唑洗脱后导致星体微管长度增加。这些结果共同表明,类似的信号通路在重塑轴突生长锥和细胞分裂过程中调节微管动力学。

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