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钙离子诱导的结构重排释放 Rap-GEF CalDAG-GEFI 的自动抑制。

Calcium-induced structural rearrangements release autoinhibition in the Rap-GEF CalDAG-GEFI.

机构信息

From the Departments of Biochemistry and Biophysics and.

the Aflac Cancer and Blood Disorders Center, Department of Pediatrics, Emory University School of Medicine, Atlanta, Georgia 30322, and.

出版信息

J Biol Chem. 2018 Jun 1;293(22):8521-8529. doi: 10.1074/jbc.RA118.002712. Epub 2018 Apr 5.

Abstract

Platelets are recruited to sites of vascular injury, where they are activated and aggregate to form a hemostatic plug. This process requires the activation of the small GTPase Rap1B by its cognate guanine nucleotide exchange factor CalDAG-GEFI. Studies on platelet function suggest that CalDAG-GEFI activity is regulated by changes in cytosolic calcium, but the exact molecular mechanism is poorly understood. Here we show that purified CalDAG-GEFI is autoinhibited and directly regulated by calcium. Substitutions of putative calcium-binding residues within the canonical EF hands of CalDAG-GEFI diminish its capacity to activate Rap1B. Structural differences between active (WT) and inactive (EF hand variant) CalDAG-GEFI protein were determined by hydrogen-deuterium exchange MS. The highest differential rates of deuterium uptake in WT over EF hand variant CalDAG-GEFI were observed in regions within the catalytic Cdc25 domain and a putative autoinhibitory linker connecting the Cdc25 and EF hand domains. Exchange activity in the EF hand variant was fully restored by an additional substitution, valine 406 to glutamate, which is thought to disrupt the interface between the autoinhibitory linker and the Cdc25 domain. Overall, our results suggest a model for how CalDAG-GEFI remains in an autoinhibited state when levels of cytosolic calcium in resting platelets are low. In response to cellular stimulation, calcium mobilization and binding to the EF hands causes conformational rearrangements within CalDAG-GEFI, including the autoinhibitory linker that frees the catalytic surface of CalDAG-GEFI to engage and activate Rap1B. The data from this study are the first evidence linking CalDAG-GEFI activity directly to calcium.

摘要

血小板被招募到血管损伤部位,在那里它们被激活并聚集形成止血塞。这个过程需要其同源鸟嘌呤核苷酸交换因子 CalDAG-GEFI 激活小 GTPase Rap1B。对血小板功能的研究表明,CalDAG-GEFI 的活性受细胞浆钙离子变化的调节,但确切的分子机制尚不清楚。在这里,我们显示纯化的 CalDAG-GEFI 是自动抑制的,并直接受钙调节。CalDAG-GEFI 中的假定钙结合残基的取代会降低其激活 Rap1B 的能力。通过氢氘交换 MS 确定了活性(WT)和非活性(EF 手变体)CalDAG-GEFI 蛋白之间的结构差异。在 WT 中相对于 EF 手变体 CalDAG-GEFI 的氢氘交换率最高的区域是在催化 Cdc25 结构域内和连接 Cdc25 和 EF 手结构域的假定自动抑制接头内。EF 手变体中的交换活性通过另一个取代完全恢复,即缬氨酸 406 突变为谷氨酸,这被认为破坏了自动抑制接头和 Cdc25 结构域之间的界面。总的来说,我们的结果表明了一种模型,即当静息血小板中的细胞浆钙离子水平较低时,CalDAG-GEFI 如何保持自动抑制状态。在细胞刺激下,钙动员和与 EF 手结合导致 CalDAG-GEFI 内的构象重排,包括自动抑制接头,该接头释放 CalDAG-GEFI 的催化表面,以与 Rap1B 结合并激活 Rap1B。这项研究的数据是将 CalDAG-GEFI 活性与钙直接联系起来的第一个证据。

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