Lim W A, Richards F M, Fox R O
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8114.
Nature. 1994 Nov 24;372(6504):375-9. doi: 10.1038/372375a0.
The Src-homology-3 (SH3) domains of the Caenorhabditis elegans protein SEM-5 and its human and Drosophila homologues, Grb2 and Drk (refs 1-4), bind proline-rich sequences found in the nucleotide-exchange factor Sos as part of their proposed function linking receptor tyrosine kinase activation to Ras activation. Here we report the crystal structure at 2.0 A resolution of the carboxy-terminal SH3 domain from SEM-5 complexed to the mSos-derived amino-acid sequence PPPVPPRRR. The peptide is found to bind in an orientation ('minus') that is precisely opposite to that observed previously ('plus' orientation) in other SH3-peptide complexes. This novel ability of peptide-recognition proteins to recognize peptides in two distinct modes may play an important role in the signalling specificity of pathways involving SH3 domains. Comparison of this structure with other SH3 complexes reveals how a conserved binding face can be used to recognize peptides in different orientations, and why the Sos peptide binds in this particular orientation.
秀丽隐杆线虫蛋白SEM-5的Src同源结构域3(SH3)及其人类和果蝇的同源物Grb2和Drk(参考文献1-4),结合核苷酸交换因子Sos中富含脯氨酸的序列,这是它们将受体酪氨酸激酶激活与Ras激活联系起来的假定功能的一部分。本文报道了SEM-5羧基末端SH3结构域与源自mSos的氨基酸序列PPPVPPRRR复合后的2.0埃分辨率晶体结构。发现该肽以一种方向(“负向”)结合,这与之前在其他SH3-肽复合物中观察到的方向(“正向”)恰好相反。肽识别蛋白以两种不同模式识别肽的这种新能力,可能在涉及SH3结构域的信号通路的信号特异性中起重要作用。将该结构与其他SH3复合物进行比较,揭示了保守的结合面如何用于识别不同方向的肽,以及Sos肽为何以这种特定方向结合。