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特异性和模糊性相互作用共同调节蛋白质半衰期。

Specific and Fuzzy Interactions Cooperate in Modulating Protein Half-Life.

机构信息

MTA-DE Laboratory of Protein Dynamics, Department of Biochemistry and Molecular Biology, University of Debrecen, Debrecen, Hungary.

Department of Organic Chemistry, University of Debrecen, Debrecen, Hungary.

出版信息

J Mol Biol. 2019 Apr 5;431(8):1700-1707. doi: 10.1016/j.jmb.2019.02.006. Epub 2019 Feb 18.

Abstract

Protein degradation is critical for maintaining cellular homeostasis. The 20S proteasome is selective for unfolded, extended polypeptide chains without ubiquitin tags. Sequestration of such segments by protein partners, however, may provide a regulatory mechanism. Here we used the AP-1 complex to study how c-Fos turnover is controlled by interactions with c-Jun. We show that heterodimerization with c-Jun increases c-Fos half-life. Mutations affecting specific contact sites (L165V, L172V) or charge separation (E175D, E189D, K190R) with c-Jun both modulate c-Fos turnover, proportionally to their impact on binding affinity. The fuzzy tail beyond the structured b-HLH/ZIP domain (~165 residues) also contributes to the stabilization of the AP-1 complex, removal of which decreases c-Fos half-life. Thus, protein turnover by 20S proteasome is fine-tuned by both specific and fuzzy interactions, consistently with the previously proposed "nanny" model.

摘要

蛋白质降解对于维持细胞内稳态至关重要。20S 蛋白酶体对没有泛素标签的展开、延伸多肽链具有选择性。然而,蛋白质伴侣对这些片段的隔离可能提供了一种调节机制。在这里,我们使用 AP-1 复合物来研究 c-Fos 周转如何通过与 c-Jun 的相互作用来控制。我们表明,与 c-Jun 的异二聚化会增加 c-Fos 的半衰期。影响与 c-Jun 特定接触位点(L165V、L172V)或电荷分离(E175D、E189D、K190R)的突变都调节 c-Fos 的周转,与它们对结合亲和力的影响成比例。结构 b-HLH/ZIP 结构域(~165 个残基)之外的模糊尾巴也有助于 AP-1 复合物的稳定,去除该尾巴会降低 c-Fos 的半衰期。因此,20S 蛋白酶体的蛋白质周转受到特异性和模糊性相互作用的精细调节,这与之前提出的“保姆”模型一致。

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