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14-3-3蛋白依赖性抑制视紫红质激酶功能的结构基础。

Structural Basis for the 14-3-3 Protein-Dependent Inhibition of Phosducin Function.

作者信息

Kacirova Miroslava, Novacek Jiri, Man Petr, Obsilova Veronika, Obsil Tomas

机构信息

Department of Physical and Macromolecular Chemistry, Faculty of Science, Charles University, Prague, Czech Republic; Institute of Physiology, Czech Academy of Sciences, Prague, Czech Republic.

CEITEC, Masaryk University, Brno, Czech Republic.

出版信息

Biophys J. 2017 Apr 11;112(7):1339-1349. doi: 10.1016/j.bpj.2017.02.036.

DOI:10.1016/j.bpj.2017.02.036
PMID:28402877
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5390052/
Abstract

Phosducin (Pdc) is a conserved phosphoprotein that, when unphosphorylated, binds with high affinity to the complex of βγ-subunits of G protein transducin (Gβγ). The ability of Pdc to bind to Gβγ is inhibited through its phosphorylation at S54 and S73 within the N-terminal domain (Pdc-ND) followed by association with the scaffolding protein 14-3-3. However, the molecular basis for the 14-3-3-dependent inhibition of Pdc binding to Gβγ is unclear. By using small-angle x-ray scattering, high-resolution NMR spectroscopy, and limited proteolysis coupled with mass spectrometry, we show that phosphorylated Pdc and 14-3-3 form a complex in which the Pdc-ND region 45-80, which forms a part of Pdc's Gβγ binding surface and contains both phosphorylation sites, is restrained within the central channel of the 14-3-3 dimer, with both 14-3-3 binding motifs simultaneously participating in protein association. The N-terminal part of Pdc-ND is likely located outside the central channel of the 14-3-3 dimer, but Pdc residues 20-30, which are also involved in Gβγ binding, are positioned close to the surface of the 14-3-3 dimer. The C-terminal domain of Pdc is located outside the central channel and its structure is unaffected by the complex formation. These results indicate that the 14-3-3 protein-mediated inhibition of Pdc binding to Gβγ is based on steric occlusion of Pdc's Gβγ binding surface.

摘要

磷光视蛋白(Pdc)是一种保守的磷蛋白,在未磷酸化时,它以高亲和力与G蛋白转导素(Gβγ)的βγ亚基复合物结合。Pdc与Gβγ结合的能力通过其在N端结构域(Pdc-ND)内的S54和S73位点磷酸化而受到抑制,随后与支架蛋白14-3-3结合。然而,14-3-3依赖性抑制Pdc与Gβγ结合的分子基础尚不清楚。通过使用小角X射线散射、高分辨率核磁共振光谱以及有限蛋白水解结合质谱分析,我们发现磷酸化的Pdc和14-3-3形成了一个复合物,其中Pdc-ND区域45-80(它构成了Pdc的Gβγ结合表面的一部分且包含两个磷酸化位点)被限制在14-3-3二聚体的中央通道内,两个14-3-3结合基序同时参与蛋白质结合。Pdc-ND的N端部分可能位于14-3-3二聚体的中央通道之外,但同样参与Gβγ结合的Pdc残基20-30靠近14-3-3二聚体的表面。Pdc的C端结构域位于中央通道之外,其结构不受复合物形成的影响。这些结果表明,14-3-3蛋白介导的对Pdc与Gβγ结合的抑制是基于对Pdc的Gβγ结合表面的空间位阻。