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RhoGAP6 通过与 COPI 相互作用来调节蛋白质运输。

RhoGAP6 interacts with COPI to regulate protein transport.

机构信息

UCD School of Medicine, Conway Institute of Biomolecular and Biomedical Research, University College Dublin, Belfield Dublin 4, Ireland.

Irish Centre for Vascular Biology, Royal College of Surgeons in Ireland, 123 St Stephen's Green, Dublin D02 YN77, Ireland.

出版信息

Biochem J. 2023 Jul 26;480(14):1109-1127. doi: 10.1042/BCJ20230013.

Abstract

RhoGAP6 is the most highly expressed GTPase-activating protein (GAP) in platelets specific for RhoA. Structurally RhoGAP6 contains a central catalytic GAP domain surrounded by large, disordered N- and C-termini of unknown function. Sequence analysis revealed three conserved consecutive overlapping di-tryptophan motifs close to the RhoGAP6 C-terminus which were predicted to bind to the mu homology domain (MHD) of δ-COP, a component of the COPI vesicle complex. We confirmed an endogenous interaction between RhoGAP6 and δ-COP in human platelets using GST-CD2AP which binds an N-terminal RhoGAP6 SH3 binding motif. Next, we confirmed that the MHD of δ-COP and the di-tryptophan motifs of RhoGAP6 mediate the interaction between both proteins. Each of the three di-tryptophan motifs appeared necessary for stable δ-COP binding. Proteomic analysis of other potential RhoGAP6 di-tryptophan motif binding partners indicated that the RhoGAP6/δ-COP interaction connects RhoGAP6 to the whole COPI complex. 14-3-3 was also established as a RhoGAP6 binding partner and its binding site was mapped to serine 37. We provide evidence of potential cross-regulation between 14-3-3 and δ-COP binding, however, neither δ-COP nor 14-3-3 binding to RhoGAP6 impacted RhoA activity. Instead, analysis of protein transport through the secretory pathway demonstrated that RhoGAP6/δ-COP binding increased protein transport to the plasma membrane, as did a catalytically inactive mutant of RhoGAP6. Overall, we have identified a novel interaction between RhoGAP6 and δ-COP which is mediated by conserved C-terminal di-tryptophan motifs, and which might control protein transport in platelets.

摘要

RhoGAP6 是血小板中特异性针对 RhoA 的最高度表达的 GTPase 激活蛋白 (GAP)。结构上,RhoGAP6 包含一个中央催化 GAP 结构域,周围是功能未知的大的、无序的 N-和 C-末端。序列分析显示,靠近 RhoGAP6 C 末端有三个保守的连续重叠二色氨酸基序,预测它们与 δ-COP 的 mu 同源结构域 (MHD) 结合,后者是 COPI 囊泡复合物的一个组成部分。我们使用 GST-CD2AP 证实了人血小板中 RhoGAP6 与 δ-COP 的内源性相互作用,GST-CD2AP 结合 RhoGAP6 的一个 N 端 SH3 结合基序。接下来,我们证实了 δ-COP 的 MHD 和 RhoGAP6 的二色氨酸基序介导了这两种蛋白质之间的相互作用。这三个二色氨酸基序中的每一个似乎都是稳定结合 δ-COP 所必需的。对其他潜在的 RhoGAP6 二色氨酸基序结合伙伴的蛋白质组学分析表明,RhoGAP6/δ-COP 相互作用将 RhoGAP6 连接到整个 COPI 复合物。14-3-3 也被确定为 RhoGAP6 的结合伙伴,其结合位点被映射到丝氨酸 37。我们提供了 14-3-3 和 δ-COP 结合之间潜在的交叉调节的证据,然而,δ-COP 或 14-3-3 与 RhoGAP6 的结合都不影响 RhoA 活性。相反,通过分泌途径分析蛋白质转运表明,RhoGAP6/δ-COP 结合增加了蛋白质向质膜的转运,催化失活的 RhoGAP6 突变体也是如此。总的来说,我们已经确定了 RhoGAP6 和 δ-COP 之间的一种新的相互作用,这种相互作用是由保守的 C 端二色氨酸基序介导的,可能控制血小板中的蛋白质运输。

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