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首页> 外文期刊>The Plant Cell >Tobacco RhoGTPase ACTIVATING PROTEIN1 Spatially Restricts Signaling of RAC/Rop to the Apex of Pollen Tubes
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Tobacco RhoGTPase ACTIVATING PROTEIN1 Spatially Restricts Signaling of RAC/Rop to the Apex of Pollen Tubes

机译:烟草RhoGTPase活化蛋白1在空间上限制RAC / Rop向花粉管顶点的信号传导

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摘要

Regulation by Rho-type small GTPases, such as RAC5, is important for the maintenance of polarity in tobacco (Nicotiana tabacum) pollen tubes. We previously showed that RhoGDI2 is necessary for RAC5 localization. Here, we describe the GTPase activatingprotein RhoGAP1 that controls the area of RAC5 activity. RhoGAP1 N-terminal and CRIB (for Cdc42/Rac-interactive binding) domains are both necessary for targeting yellow fluorescent protein-RhoGAP1 fusions to the plasma membrane close to, but not in, pollen tube apices. We propose that this localization restricts apical Rho-type GTPase activity from spreading toward the flanks, which ensures the maintenance of RAC signaling at the apex. The CRIB domain is not required but enhances in vitro RhoGAP1 activity toward the pollen tube-specific-RAC5. A mutation reducing GAP activity of RhoGAP1 leads to ballooning pollen tubes resembling those overexpressing RAC5. To ascertain the specific targeting mechanism of RhoGAP1, we isolated a 14-3-3 protein interacting with RhoGAP1. When overexpressed with RhoGAP1, it counteracts the growth-retarding effect of RhoGAP1 overexpression and attenuates RhoGAP1 membrane localization but, overexpressed alone, induces only small architectural changes. We propose that inactivation of RAC5 by the subapically localized RhoGAP1, together with dynamic relocalization of inactivated RAC5 from flanks to tip by RhoGDI2, leads to spatial restriction of RAC5 to pollen tube apices, thereby sustaining polar growth.
机译:Rho型小GTP酶(如RAC5)的调节对于维持烟草(Nicotiana tabacum)花粉管中的极性非常重要。先前,我们表明RhoGDI2对于RAC5本地化是必需的。在这里,我们描述了控制RAC5活性区域的GTPase活化蛋白RhoGAP1。 RhoGAP1 N末端和CRIB(用于Cdc42 / Rac相互作用结合)结构域都是将黄色荧光蛋白-RhoGAP1融合蛋白定向到质膜(而不是在花粉管顶点附近)所必需的。我们建议这种定位限制了根尖Rho型GTPase活性向侧面的扩散,从而确保了RAC信号在顶点的维持。 CRIB结构域不是必需的,但可增强体外RhoGAP1对花粉管特异性RAC5的活性。 RhoGAP1的降低GAP活性的突变导致花粉管膨胀,类似于过度表达RAC5的花粉管。为了确定RhoGAP1的特异性靶向机制,我们分离了与RhoGAP1相互作用的14-3-3蛋白。当RhoGAP1过表达时,它抵消了RhoGAP1过表达的生长迟缓作用,并减弱了RhoGAP1膜的定位,但是,单独过表达,只会引起较小的结构变化。我们提出,通过亚尖顶定位的RhoGAP1使RAC5失活,再加上由RhoGDI2使灭活的RAC5从侧面到尖端动态重新定位,导致RAC5在花粉管顶点的空间受限,从而维持极地生长。

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