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Structural basis for allosteric control of the SERCA-Phospholamban membrane complex by Ca

机译:CAS的Serca-Phospolamban膜复合物的构建依据的结构基础

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摘要

Phospholamban (PLN) is a mini-membrane protein that directly controls the cardiac Ca2+-transport response to β-adrenergic stimulation, thus modulating cardiac output during the fight-or-flight response. In the sarcoplasmic reticulum membrane, PLN binds to the sarco(endo)plasmic reticulum Ca2+-ATPase (SERCA), keeping this enzyme's function within a narrow physiological window. PLN phosphorylation by cAMP-dependent protein kinase A or increase in Ca2+ concentration reverses the inhibitory effects through an unknown mechanism. Using oriented-sample solid-state NMR spectroscopy and replica-averaged NMR-restrained structural refinement, we reveal that phosphorylation of PLN’s cytoplasmic regulatory domain signals the disruption of several inhibitory contacts at the transmembrane binding interface of the SERCA-PLN complex that are propagated to the enzyme’s active site, augmenting Ca2+ transport. Our findings address long-standing questions about SERCA regulation, epitomizing a signal transduction mechanism operated by posttranslationally modified bitopic membrane proteins.
机译:磷醛(PLN)是一种迷你膜蛋白,可直接控制心脏CA2 + -Transport对β-肾上腺素能刺激的反应,从而在战斗或飞行反应期间调节心输出。在肌肉网状膜中,PLN与Sarco(endo)血浆Ca2 + -AtPase(Serca)结合,将该酶的功能保持在狭窄的生理窗口内。通过CAMP依赖性蛋白激酶A或CA2 +浓度的增加通过未知机制来抑制抑制作用。使用取向样的固态NMR光谱和复制平均NMR抑制的结构细化,我们揭示了PLN的细胞质调节域的磷酸化信号在繁殖的Serca-PLN复合物的跨膜结合界面处产生几种抑制界面的破坏酶的活跃点,增强CA2 +运输。我们的调查结果解决了关于Serca规则的长期问题,缩影了由后期改性的比基尼膜蛋白操作的信号转导机制。

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