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A激酶附着蛋白-蛋白激酶A复合物中的内在无序性引导局部底物磷酸化。

Intrinsic disorder within an AKAP-protein kinase A complex guides local substrate phosphorylation.

作者信息

Smith F Donelson, Reichow Steve L, Esseltine Jessica L, Shi Dan, Langeberg Lorene K, Scott John D, Gonen Tamir

机构信息

Department of Pharmacology, Howard Hughes Medical Institute, University of Washington, Seattle, United States.

出版信息

Elife. 2013 Nov 5;2:e01319. doi: 10.7554/eLife.01319.

Abstract

Anchoring proteins sequester kinases with their substrates to locally disseminate intracellular signals and avert indiscriminate transmission of these responses throughout the cell. Mechanistic understanding of this process is hampered by limited structural information on these macromolecular complexes. A-kinase anchoring proteins (AKAPs) spatially constrain phosphorylation by cAMP-dependent protein kinases (PKA). Electron microscopy and three-dimensional reconstructions of type-II PKA-AKAP18γ complexes reveal hetero-pentameric assemblies that adopt a range of flexible tripartite configurations. Intrinsically disordered regions within each PKA regulatory subunit impart the molecular plasticity that affords an ∼16 nanometer radius of motion to the associated catalytic subunits. Manipulating flexibility within the PKA holoenzyme augmented basal and cAMP responsive phosphorylation of AKAP-associated substrates. Cell-based analyses suggest that the catalytic subunit remains within type-II PKA-AKAP18γ complexes upon cAMP elevation. We propose that the dynamic movement of kinase sub-structures, in concert with the static AKAP-regulatory subunit interface, generates a solid-state signaling microenvironment for substrate phosphorylation. DOI: http://dx.doi.org/10.7554/eLife.01319.001.

摘要

锚定蛋白将激酶及其底物隔离,以在局部传递细胞内信号,并避免这些反应在整个细胞中无差别地传播。由于这些大分子复合物的结构信息有限,对这一过程的机制理解受到阻碍。A激酶锚定蛋白(AKAPs)在空间上限制了环磷酸腺苷依赖性蛋白激酶(PKA)的磷酸化作用。电子显微镜和II型PKA-AKAP18γ复合物的三维重建揭示了采用一系列灵活的三方构型的异源五聚体组装体。每个PKA调节亚基内的内在无序区域赋予分子可塑性,使相关催化亚基具有约16纳米的运动半径。操纵PKA全酶内的灵活性增强了与AKAP相关底物的基础和cAMP反应性磷酸化。基于细胞的分析表明,cAMP升高后催化亚基仍保留在II型PKA-AKAP18γ复合物中。我们提出,激酶子结构的动态运动与静态的AKAP调节亚基界面协同作用,为底物磷酸化产生了一个固态信号微环境。DOI: http://dx.doi.org/10.7554/eLife.01319.001

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d91c/3814001/df50f237f850/elife01319f001.jpg

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