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蛋白激酶A的RIα亚基构象动态的C螺旋在与C亚基结合时介导亚型特异性结构域重组。

The conformationally dynamic C helix of the RIalpha subunit of protein kinase A mediates isoform-specific domain reorganization upon C subunit binding.

作者信息

Vigil Dominico, Blumenthal Donald K, Taylor Susan S, Trewhella Jill

机构信息

Department of Chemistry and Biochemistry and Howard Hughes Medical Institute, University of California, San Diego, La Jolla, California 92037, USA.

出版信息

J Biol Chem. 2005 Oct 21;280(42):35521-7. doi: 10.1074/jbc.M506769200. Epub 2005 Aug 17.

Abstract

Different isoforms of the full-length protein kinase A (PKA) regulatory subunit homodimer (R2) and the catalytic (C) subunit-bound holoenzyme (R2C2) have very different global structures despite similar molecular weights and domain organization within their primary sequences. To date, it has been the linker sequence between the R subunit dimerization/docking domain and cAMP-binding domain A that has been implicated in modulating domain interactions to give rise to these differences in global structure. The small angle solution scattering data presented here for three different isoforms of PKA heterodimer (deltaR-C) complexes reveal a role for another conformationally dynamic sequence in modulating inter-subunit and domain interactions, the C helix that connects the cAMP-binding domains A and B of the R subunit. The deltaR-C heterodimer complexes studied here were each formed with a monomeric N-terminal deletion mutant of the R subunit (deltaR) that contains the inhibitor sequence and both cAMP-binding domains. The scattering data show that type IIalpha and type IIbeta deltaR-C heterodimers are relatively compact and globular, with the C subunit contacting the inhibitor sequence and both cAMP-binding domains. In contrast, the type Ialpha heterodimer is significantly more extended, with the C subunit interacting with the inhibitor sequence and cAMP-binding domain A, whereas domain B extends out such that its surface is almost completely solvent exposed. These data implicate the C helix of RIalpha in modulating isoform-specific interdomain communication in the PKA holoenzyme, adding another layer of structural complexity to our understanding of signaling dynamics in this multisubunit, multidomain protein kinase.

摘要

全长蛋白激酶A(PKA)调节亚基同型二聚体(R2)以及与催化(C)亚基结合的全酶(R2C2)的不同亚型,尽管其分子量相似且一级序列中的结构域组织相同,但其整体结构却大不相同。迄今为止,人们认为是R亚基二聚化/对接结构域与cAMP结合结构域A之间的连接序列参与调节结构域间的相互作用,从而导致这些整体结构上的差异。本文给出的PKA异源二聚体(deltaR-C)复合物三种不同亚型的小角溶液散射数据揭示了另一个构象动态序列在调节亚基间和结构域间相互作用中的作用,即连接R亚基cAMP结合结构域A和B的C螺旋。本文研究的deltaR-C异源二聚体复合物均由R亚基的单体N端缺失突变体(deltaR)形成,该突变体包含抑制剂序列和两个cAMP结合结构域。散射数据表明,IIα型和IIβ型deltaR-C异源二聚体相对紧凑且呈球状,C亚基与抑制剂序列和两个cAMP结合结构域接触。相比之下,Iα型异源二聚体明显更为伸展,C亚基与抑制剂序列和cAMP结合结构域A相互作用,而结构域B向外延伸,其表面几乎完全暴露于溶剂中。这些数据表明RIα的C螺旋在调节PKA全酶中亚型特异性的结构域间通讯中发挥作用,为我们理解这种多亚基、多结构域蛋白激酶的信号转导动力学增加了另一层结构复杂性。

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