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Exploring the structural basis of conformational heterogeneity and autoinhibition of human cGMP-specific protein kinase Iα through computational modelling and molecular dynamics simulations

机译:通过计算建模和分子动力学模拟探索构象异质性和自动抑制人CGMP特异性蛋白激酶Iα的结构基础

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摘要

Protein kinase Iα (PKGIα) is a pivotal cyclic guanosine monophosphate (cGMP) signalling protein. Major steps related to the structural plasticity of PKGIα have been inferred but the structural aspects of the auto-inhibition and multidomain tertiary organization of human PKGIα in active and inactive form are not clear. Here we combine computational comparative modelling, protein–protein docking and molecular dynamics (MD) simulations to investigate structural details of the repressed state of the catalytic domain of PKGIα. Exploration of the potential inhibitory conformation of the auto-inhibitory domain (AI) within the catalytic cleft reveals that the pseudo-substrate motif binds with residues of the glycine rich loop and substrate-binding lobe. Dynamic changes as a result of coupling of the catalytic and AI domains are also investigated. The three-dimensional homodimeric models of PKGIα in the active and inactive state indicate that PKGIα in its inactive-state attains a compact globular structure where cyclic nucleotide binding (CNB-A/B) domains are buried, whereas the catalytic domains are inaccessible with their substrate-binding pockets facing the N-terminal of CNB-A. Contrary to this, the active-state model of PKGIα shows an extended conformation where CNB-A/B domains are slightly rearranged and the catalytic domains of homodimer flanking the C-terminal with their substrate binding lobes free to entrap downstream proteins. These findings are consistent with previously reported static images of the multidomain organization of PKGIα. Structural insights pertaining to the conformational heterogeneity and auto-inhibition of PKGIα provided in this study may help to understand the dynamics-driven effective regulation of PKGIα.
机译:蛋白激酶Iα(PKGIα)是枢转环磷酸鸟苷(cGMP)的信号蛋白。主要步骤涉及到PKGIα的结构可塑性已经推断出,但自动抑制和人类PKGIα的多域三级组织活性和非活性形式的结构方面并不清楚。下面我们就结合计算比较建模,蛋白质对接和分子动力学(MD)模拟调查PKGIα的催化结构域的压抑状态的结构细节。催化裂隙内的自动抑制性结构域(AI)的潜在抑制构象的勘探表明,伪衬底基序结合与富含甘氨酸的循环和底物结合瓣的残基。被动态变化作为催化和AI域的耦合的结果还研究。在活动和非活动状态PKGIα的三维同型二聚体模型表明PKGIα非激活状态达到一个紧密的球状结构,其中环核苷酸结合(CNB-A / B)结构域被埋入,而催化结构域是不可访问与他们的底物结合面向所述N-末端CNB-A的口袋。与此相反,PKGIα的活动状态模型示出了伸展的构象,其中CNB-A / B结构域被略微重新排列和同型二聚体的侧翼的C末端与它们的底物结合裂片释放截留下游蛋白质的催化结构域。这些发现与PKGIα的多领域组织先前报道的静态图像相一致。有关本研究中提供PKGIα的构象异质性和自动抑制结构的见解可能有助于了解PKGIα的动态驱动的有效监管。

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