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The structure of an Arf-arfgap complex reveals a Ca~(2+) regulatory mechanism

机译:Arf-arfgap复合物的结构揭示了Ca〜(2+)调控机制

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Arfs are small G proteins that have a key role in vesicle trafficking and cytoskeletal remodeling. ArfGAP proteins stimulate Arf intrinsic GTP hydrolysis by a mechanism that is still unresolved. Using a fusion construct we solved the structure of the ArfGAP ASAP3 in complex with Arf6 in the transition state. This structure clarifies the ArfGAP catalytic mechanism and shows a glutamine~((Arf6)) and an arginine finger~((ASAP3)) as the important catalytic residues. Unexpectedly the structure shows a calcium ion, liganded by both proteins in the complex interface, stabilizing the interaction and orienting the catalytic machinery. Calcium stimulates the GAP activity of ASAPs, but not other members of the ArfGAP family. This type of regulation is unique for GAPs and any other calcium-regulated processes and hints at a crosstalk between Ca~(2+) and Arf signaling.
机译:Arfs是小G蛋白,在小泡运输和细胞骨架重塑中起关键作用。 ArfGAP蛋白通过尚无法解决的机制刺激Arf固有的GTP水解。使用融合构建体,我们解决了ArfGAP ASAP3与Arf6处于过渡状态的复合物的结构。该结构阐明了ArfGAP的催化机理,并显示出谷氨酰胺((Arf6))和精氨酸指((ASAP3))是重要的催化残基。出乎意料的是,该结构显示出钙离子,该钙离子被复合界面中的两种蛋白质所配位,从而稳定了相互作用并确定了催化机理。钙刺激ASAP的GAP活性,但不刺激ArfGAP家族的其他成员。这种类型的调节对于GAP和任何其他钙调节过程而言是唯一的,并暗示Ca〜(2+)与Arf信号传导之间存在串扰。

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