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Rnd 蛋白缺乏 GTPase 通过其效应物稳定。

The GTPase-deficient Rnd proteins are stabilized by their effectors.

机构信息

Rho GTPases Signaling Group, Institute of Medical Biology, 8A Biomedical Grove, 06-06 Immunos Building 138648, Singapore.

出版信息

J Biol Chem. 2012 Sep 7;287(37):31311-20. doi: 10.1074/jbc.M111.327056. Epub 2012 Jul 17.

Abstract

Rnd proteins are Rho family GTP-binding proteins with cellular functions that antagonize RhoA signaling. We recently described a new Rnd3 effector Syx, also named PLEKHG5, that interacts with Rnds via a Raf1-like "Ras-binding domain." Syx is a multidomain RhoGEF that participates in early zebrafish development. Here we demonstrated that Rnd1, Rnd2, and Rnd3 stability is acutely dependent on interaction with their effectors such as Syx or p190 RhoGAP. Although Rnd3 turnover is blocked by treatment of cells with MG132, we provide evidence that such turnover is mediated indirectly by effects on the Rnd3 effectors, rather than on Rnd3 itself, which is not significantly ubiquitinated. The minimal regions of Syx and p190 RhoGAP that bind Rnd3 are not sequence-related but have similar effects. We have identified features that allow for Rnd3 turnover including a conserved Lys-45 close to the switch I region and the C-terminal membrane-binding domain of Rnd3, which cannot be substituted by the equivalent Cdc42 CAAX sequence. By contrast, an effector binding-defective mutant of Rnd3 when overexpressed undergoes turnover at normal rates. Interestingly the activity of the RhoA-regulated kinase ROCK stimulates Rnd3 turnover. This study suggests that Rnd proteins are regulated through feedback mechanisms in cells where the level of effectors and RhoA activity influence the stability of Rnd proteins. This effector feedback behavior is analogous to the ability of ACK1 and PAK1 to prolong the lifetime of the active GTP-bound state of Cdc42 and Rac1.

摘要

Rnd 蛋白是 Rho 家族 GTP 结合蛋白,具有拮抗 RhoA 信号的细胞功能。我们最近描述了一种新的 Rnd3 效应物 Syx,也称为 PLEKHG5,它通过类似于 Raf1 的“Ras 结合域”与 Rnds 相互作用。Syx 是一种多结构域 RhoGEF,参与早期斑马鱼发育。在这里,我们证明 Rnd1、Rnd2 和 Rnd3 的稳定性严重依赖于与其效应物如 Syx 或 p190 RhoGAP 的相互作用。虽然用 MG132 处理细胞可以阻断 Rnd3 的周转,但我们提供的证据表明,这种周转是通过对 Rnd3 效应物的间接影响介导的,而不是对 Rnd3 本身的影响,因为 Rnd3 本身没有被显著泛素化。与 Syx 和 p190 RhoGAP 结合的 Rnd3 的最小区域不是序列相关的,但具有相似的作用。我们已经确定了允许 Rnd3 周转的特征,包括靠近开关 I 区域的保守 Lys-45 和 Rnd3 的 C 端膜结合结构域,后者不能被等效的 Cdc42 CAAX 序列取代。相比之下,当过度表达时,Rnd3 的效应物结合缺陷突变体以正常速率进行周转。有趣的是,RhoA 调节激酶 ROCK 的活性刺激 Rnd3 周转。这项研究表明,Rnd 蛋白在细胞中通过反馈机制进行调节,其中效应物和 RhoA 活性的水平影响 Rnd 蛋白的稳定性。这种效应物反馈行为类似于 ACK1 和 PAK1 延长 Cdc42 和 Rac1 的活性 GTP 结合状态的寿命的能力。

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