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核癌蛋白Ski识别Smad4的结构机制:对Ski介导的TGF-β信号通路抑制作用的见解

Structural mechanism of Smad4 recognition by the nuclear oncoprotein Ski: insights on Ski-mediated repression of TGF-beta signaling.

作者信息

Wu Jia Wei, Krawitz Ariel R, Chai Jijie, Li Wenyu, Zhang Fangjiu, Luo Kunxin, Shi Yigong

机构信息

Department of Molecular Biology, Lewis Thomas Laboratory, Princeton University, Princeton, NJ 08544, USA.

出版信息

Cell. 2002 Nov 1;111(3):357-67. doi: 10.1016/s0092-8674(02)01006-1.

Abstract

The Ski family of nuclear oncoproteins represses TGF-beta signaling through interactions with the Smad proteins. The crystal structure of the Smad4 binding domain of human c-Ski in complex with the MH2 domain of Smad4 reveals specific recognition of the Smad4 L3 loop region by a highly conserved interaction loop (I loop) from Ski. The Ski binding surface on Smad4 significantly overlaps with that required for binding of the R-Smads. Indeed, Ski disrupts the formation of a functional complex between the Co- and R-Smads, explaining how it could lead to repression of TGF-beta, activin, and BMP responses. Intriguingly, the structure of the Ski fragment, stabilized by a bound zinc atom, resembles the SAND domain, in which the corresponding I loop is responsible for DNA binding.

摘要

Ski家族核癌蛋白通过与Smad蛋白相互作用来抑制TGF-β信号传导。人c-Ski的Smad4结合结构域与Smad4的MH2结构域形成的复合物的晶体结构显示,Ski中高度保守的相互作用环(I环)对Smad4的L3环区域具有特异性识别。Smad4上的Ski结合表面与R-Smads结合所需的表面有显著重叠。实际上,Ski破坏了共-Smads和R-Smads之间功能性复合物的形成,这解释了它如何导致TGF-β、激活素和骨形态发生蛋白(BMP)反应受到抑制。有趣的是,由结合的锌原子稳定的Ski片段的结构类似于SAND结构域,其中相应的I环负责DNA结合。

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