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Positive regulation of Rho GTPase activity by RhoGDIs as a result of their direct interaction with GAPs

机译:RhoGDI与GAP直接相互作用的结果,对Rho GTPase活性具有积极的调节作用。

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Background Rho GTPases function as molecular switches in many different signaling pathways and control a wide range of cellular processes. Rho GDP-dissociation inhibitors (RhoGDIs) regulate Rho GTPase signaling and can function as both negative and positive regulators. The role of RhoGDIs as negative regulators of Rho GTPase signaling has been extensively investigated; however, little is known about how RhoGDIs act as positive regulators. Furthermore, it is unclear how this opposing role of GDIs influences the Rho GTPase cycle. We constructed ordinary differential equation models of the Rho GTPase cycle in which RhoGDIs inhibit the regulatory activities of guanine nucleotide exchange factors (GEFs) and GTPase-activating proteins (GAPs) by interacting with them directly as well as by sequestering the Rho GTPases. Using this model, we analyzed the role of RhoGDIs in Rho GTPase signaling. Results The model constructed in this study showed that the functions of GEFs and GAPs are integrated into Rho GTPase signaling through the interactions of these regulators with GDIs, and that the negative role of GDIs is to suppress the overall Rho activity by inhibiting GEFs. Furthermore, the positive role of GDIs is to sustain Rho activation by inhibiting GAPs under certain conditions. The interconversion between transient and sustained Rho activation occurs mainly through changes in the affinities of GDIs to GAPs and the concentrations of GAPs. Conclusions RhoGDIs positively regulate Rho GTPase signaling primarily by interacting with GAPs and may participate in the switching between transient and sustained signals of the Rho GTPases. These findings enhance our understanding of the physiological roles of RhoGDIs and Rho GTPase signaling.
机译:背景Rho GTPases在许多不同的信号传导途径中起分子开关的作用,并控制广泛的细胞过程。 Rho GDP解离抑制剂(RhoGDIs)调节Rho GTPase信号传导,可以同时充当负调节剂和正调节剂。 RhoGDIs作为Rho GTPase信号转导的负调节剂的作用已得到广泛研究。然而,人们对RhoGDI如何发挥积极的调节作用知之甚少。此外,还不清楚GDI的这种相反作用如何影响Rho GTPase循环。我们构建了Rho GTPase循环的常微分方程模型,其中RhoGDI通过与鸟嘌呤核苷酸交换因子(GEFs)和GTPase激活蛋白(GAPs)直接相互作用以及通过螯合Rho GTPases来抑制其调节活性。使用此模型,我们分析了RhoGDI在Rho GTPase信号传导中的作用。结果本研究构建的模型表明,GEF和GAP的功能通过这些调节剂与GDI的相互作用而整合到Rho GTPase信号传导中,而GDI的负作用是通过抑制GEF来抑制总体Rho活性。此外,GDI的积极作用是通过在某些条件下抑制GAP来维持Rho激活。瞬时和持续的Rho活化之间的相互转化主要通过GDI对GAP的亲和力和GAP浓度的变化而发生。结论RhoGDI主要通过与GAP相互作用来积极调节Rho GTPase信号传导,并可能参与Rho GTPases瞬时信号和持续信号之间的转换。这些发现增强了我们对RhoGDI和Rho GTPase信号传导的生理作用的理解。

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