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首页> 外文期刊>Plant physiology >Arabidopsis RopGAPs are a novel family of Rho GTPase-activating proteinsthat require the Cdc42/Rac-interactive binding motif for Rop-specificGTPase stimulation
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Arabidopsis RopGAPs are a novel family of Rho GTPase-activating proteinsthat require the Cdc42/Rac-interactive binding motif for Rop-specificGTPase stimulation

机译:拟南芥RopGAP是Rho GTPase激活蛋白的新家族,需要Cdc42 / Rac相互作用结合基序来刺激Rop特异性GTPase

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The plant-specific Rop subfamily of Rho GTPases, most closely related to the mammalian Cdc42 and Rac GTPases, plays an important role in the regulation of calcium-dependent pollen tube growth, H2O2-mediated cell death, and many other processes in plants. In a search for Rop interactors using the two-hybrid method, we identified a family of Rho GTPase-activating proteins (GAP) from Arabidopsis, termed RopGAPs. In addition to a GAP catalytic domain, RopGAPs contain a Cdc42/Rac-interactive binding (CRIB) motif known to allow Cdc42/Rac effector proteins to bind activated Cdc42/Rac. This novel combination of a GAP domain with a CRIB motif is widespread in higher plants and is unique to the regulation of the Rop GTPase. A critical role for CRIB in the regulation of in vitro RopGAP activity was demonstrated using point and deletion mutations. Both types of mutants have drastically reduced capacities to stimulate the intrinsic Rop GTPase activity and to bind Rep. Furthermore, RopGAPs preferentially stimulate the GTPase activity of Rep, but not Cdc42 in a CRIB-dependent manner. In vitro binding assays show that the RopGAP CRIB domain interacts with GTP- and GDP-bound forms of Rep, as well as the transitional state of Rop mimicked by aluminum fluoride. The CRIB domain also promotes the association of the GAP domain with the GDP-bound Rep, as does aluminum fluoride. These results reveal a novel CRIB-dependent mechanism for the regulation of the plant-specific family of Rho GAPs. We propose that the CRIB domain facilitates the formation of or enhanced GAP-mediated stabilization of the transitional state of the Rop GTPase.
机译:Rho GTPases的植物特有的Rop家族,与哺乳动物Cdc42和Rac GTPases最为相关,在调节钙依赖性花粉管生长,H2O2介导的细胞死亡以及植物的许多其他过程中起着重要作用。在使用双杂交方法搜索Rop相互作用子中,我们鉴定了一个来自拟南芥属的Rho GTPase激活蛋白(GAP)家族,称为RopGAPs。除了GAP催化域外,RopGAP还包含一个Cdc42 / Rac相互作用结合(CRIB)基序,已知该基序允许Cdc42 / Rac效应蛋白结合活化的Cdc42 / Rac。 GAP结构域与CRIB基序的这种新颖组合在高等植物中广泛存在,并且对于Rop GTP酶的调节是独特的。使用点和缺失突变证明了CRIB在体外RopGAP活性调节中的关键作用。两种类型的突变体刺激内在Rop GTPase活性和结合Rep的能力都大大降低。此外,RopGAPs以CRIB依赖性方式优先刺激Rep的GTPase活性,而不是Cdc42。体外结合试验表明,RopGAP CRIB结构域与Rep的GTP和GDP结合形式相互作用,以及由氟化铝模拟的Rop的过渡态。 CRIB结构域也促进了GAP结构域与GDP约束的Rep的结合,氟化铝也是如此。这些结果揭示了新颖的CRIB依赖性机制,用于调节Rho GAP的植物特异性家族。我们建议,CRIB结构域促进Rop GTPase过渡态的形成或增强的GAP介导的稳定作用。

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