首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Distinct interaction modes of an AKAP bound to two regulatory subunit isoforms of protein kinase A revealed by amide hydrogen/deuterium exchange
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Distinct interaction modes of an AKAP bound to two regulatory subunit isoforms of protein kinase A revealed by amide hydrogen/deuterium exchange

机译:AKAP与蛋白激酶A的两个调节亚基同工型结合的不同相互作用模式通过酰胺氢/氘交换揭示

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摘要

The structure of an AKAP docked to the dimerization/docking (D/D) domain of the type II (RIIα) isoform of protein kinase A (PKA) has been well characterized, but there currently is no detailed structural information of an AKAP docked to the type I (RIα) isoform. Dual-specific AKAP2 (D-AKAP2) binds in the nanomolar range to both isoforms and provided us with an opportunity to characterize the isoform-selective nature of AKAP binding using a common docked ligand. Hydrogen/deuterium (H/D) exchange combined with mass spectrometry (DXMS) was used to probe backbone structural changes of an α-helical A-kinase binding (AKB) motif from D-AKAP2 docked to both RIα and RIIα D/D domains. The region of protection upon complex formation and the magnitude of protection from H/D exchange were determined for both interacting partners in each complex. The backbone of the AKB ligand was more protected when bound to RIα compared to RIIα, suggesting an increased helical stabilization of the docked AKB ligand. This combined with a broader region of backbone protection induced by the AKAP on the docking surface of RIα indicated that there were more binding constraints for the AKB ligand when bound to RIα. This was in contrast to RIIα, which has a preformed, localized binding surface. These distinct modes of AKAP binding may contribute to the more discriminating nature of the RIα AKAP-docking surface. DXMS provides valuable structural information for understanding binding specificity in the absence of a high-resolution structure, and can readily be applied to other protein–ligand and protein–protein interactions.
机译:AKAP的结构已经对蛋白质激酶A(PKA)的II型(RIIα)同工型的二聚化/对接(D / D)域进行了表征,但是目前尚无对接于AKAP的AKAP的详细结构信息。 I型(RIα)同工型。双特异性AKAP2(D-AKAP2)在纳摩尔范围内与两种同工型结合,并为我们提供了使用常见的对接配体表征AKAP结合的同工型选择性性质的机会。氢/氘(H / D)交换与质谱(DXMS)结合用于探测D-AKAP2与RIα和RIIαD / D结构域对接的α-螺旋A激酶结合(AKB)基序的骨架结构变化。确定了每个复合物中两个相互作用的配偶体形成复合物时的保护区域和H / D交换的保护强度。与RIIα相比,与RIα结合时,AKB配体的骨架受到更多的保护,表明对接的AKB配体的螺旋稳定性增强。这与AKAP在RIα的对接表面上诱导的更广泛的骨架保护区域相结合,表明与RIα结合时,AKB配体具有更多的结合约束。这与具有预先形成的局部结合表面的RIIα相反。 AKAP结合的这些不同模式可能有助于RIαAKAP对接表面的更具区分性。 DXMS提供了宝贵的结构信息,可用于在缺乏高分辨率结构的情况下理解结合特异性,并可轻松应用于其他蛋白质-配体和蛋白质-蛋白质相互作用。

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