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Function and regulation of Tumbleweed (RacGAP5OC) in neuroblast proliferation and neuronal morphogenesis

机译:风滚草(RacGAP5OC)在成神经细胞增殖和神经元形态发生中的功能和调控

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Drosophila RacGAP50C and its homologues act as part of a complex with a kinesin-like protein (Pavarotti Zen-4) that is essential for the formation of the central spindle and completion of cytokinesis [Mishima, M., Kaitna, S. & Glotzer, M. (2002) Dev. Cell 2, 41-54; Somers, W. G. & Saint, R. (2003) Dev. Cell 4,29-39; Jantsch-Plunger et al. (2000)J. CellBiol. 149,1391-1404]. We report here that RacGAP50C corresponds to the tumbleweed (turn) gene previously identified based on its defects in dendrite development of sensory neurons [Gao, F. B., Brenman, J. E., Jan, L. Y. & Jan, Y. N. (1999) Genes Dev. 13, 2549-2561]. Using mushroom body neurogenesis and morphogenesis as a model, we show that Tumbleweed (Turn), Pavarotti, and their association are required for neuroblast proliferation. Turn with a mutation predicted to disrupt the GTPase-activating protein (GAP) activity still largely retains its activity in regulating cell division but is impaired in its activity to limit axon growth. We also provide evidence that Tum and Pavarotti regulate the subcellular localization of each Other in postmitotic neurons and that cytoplasmic accumulation of both proteins disrupts axon development in a GAP-dependent manner. Taken together with previous studies of RacGAP50C in regulating cytokinesis, we propose that Turn serves as a scaffolding protein in regulating cell division but acts as a GAP to limit axon growth in postmitotic neurons.
机译:果蝇RacGAP50C及其同系物是与驱动蛋白样蛋白(Pavarotti Zen-4)复合物的一部分,该蛋白对于形成中心纺锤体和完成胞质分裂是必不可少的[Mishima,M.,Kaitna,S.&Glotzer, M.(2002)Dev。单元2,41-54; Somers,W.G.&Saint,R.(2003)Dev。细胞4,29-39; Jantsch-Plunger等。 (2000)J. CellBiol。 149,1391-1404]。我们在这里报告RacGAP50C对应于以前基于其在感觉神经元的树突发育中的缺陷鉴定的风滚草(转)基因[Gao,F.B.,Brenman,J.E.,Jan,L.Y.&Jan,Y.N.(1999)Genes Dev。 13,2549-2561]。使用蘑菇体神经发生和形态发生作为模型,我们表明风滚草(Turn),Pavarotti及其关联对于神经母细胞增殖是必需的。预计会破坏GTPase激活蛋白(GAP)活性的突变转弯仍在很大程度上保留了其在调节细胞分裂中的活性,但其限制轴突生长的活性却受到了损害。我们还提供证据,证明Tum和Pavarotti调节有丝分裂后神经元中彼此的亚细胞定位,并且两种蛋白的胞质积累以GAP依赖性方式破坏轴突的发育。结合以前的RacGAP50C在调节胞质分裂中的研究,我们建议Turn在调节细胞分裂中起支架蛋白的作用,但在限制有丝分裂后神经元中轴突生长方面起GAP的作用。

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