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首页> 外文期刊>The Journal of biological chemistry >Distinct Peptide Binding Specificities of Src Homology 3 (SH3) Protein Domains Can Be Determined by Modulation of Local Energetics across the Binding Interface
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Distinct Peptide Binding Specificities of Src Homology 3 (SH3) Protein Domains Can Be Determined by Modulation of Local Energetics across the Binding Interface

机译:SRC同源性3(SH3)蛋白质结构域的不同肽结合特异性可以通过在绑定界面上调制局部能量来确定

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摘要

The yeast Nbp2p SH3 and Bem1p SH3b domains bind certain target peptides with similar high affinities, yet display vastly different affinities for other targets. To investigate this unusual behavior, we have solved the structure of the Nbp2p SH3-Ste20 peptide complex and compared it with the previously determined structure of the Bem1p SH3b bound to the same peptide. Although the Ste20 peptide interacts with both domains in a structurally similar manner, extensive in vitro studies with domain and peptide mutants revealed large variations in interaction strength across the binding interface of the two complexes. Whereas the Nbp2p SH3 made stronger contacts with the peptide core RXXPXXP motif, the Bem1p SH3b domain made stronger contacts with residues flanking the core motif. Remarkably, this modulation of local binding energetics can explain the distinct and highly nuanced binding specificities of these two domains.
机译:酵母NBP2P SH3和BEM1P SH3B结构域与相似的高亲和力结合某些靶肽,但为其他靶点显示出大量不同的亲和力。为了研究这种不寻常的行为,我们已经解决了NBP2P SH3-STE20肽复合物的结构,并将其与先前确定的BEM1P SH3B的结构进行了比较了与相同的肽结合。尽管STE20肽以结构上类似的方式与两个结构域相互作用,但具有结构域和肽突变体的广泛体外研究揭示了两种配合物的结合界面的相互作用强度的大变化。而NBP2P SH3与肽核心RXXPXXP基序制成更强的触点,则BEM1P SH3B结构域与芯基序的侧翼侧翼的残留物使得更强的触点。值得注意的是,这种局部结合能量的调节可以解释这两个域的不同和高度差别的结合特异性。

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