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W→F WW结构域变体的结构与功能表征:鉴定一种在配体结合时折叠的天然未折叠蛋白。

Characterization of the structure and function of W --> F WW domain variants: identification of a natively unfolded protein that folds upon ligand binding.

作者信息

Koepf E K, Petrassi H M, Ratnaswamy G, Huff M E, Sudol M, Kelly J W

机构信息

Department of Chemistry, The Skaggs Institute of Chemical Biology, The Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

Biochemistry. 1999 Oct 26;38(43):14338-51. doi: 10.1021/bi991105l.

Abstract

The WW domain adopts a compact, three-stranded, antiparallel beta-sheet structure that mediates protein-protein interactions by binding to xPPxY-based protein ligands, such as the PY-ligand (EYPPYPPPPYPSG) derived from p53 binding protein-2. The conserved Trp residues, after which this domain was named, were replaced with Phe so their importance in structural integrity and for ligand binding could be evaluated. A biophysical approach was employed to compare the W17F, W39F, and W17F/W39F WW domains to the wild-type protein. The data demonstrate that replacement of Trp39 with Phe (W39F) does not disrupt the structure of the WW domain variant, but does abolish ligand binding. In contrast, the W17F WW domain variant is largely if not completely unfolded; however, this variant undergoes a PY-ligand induced disorder to order (folding) transition. The dissociation constant for the W17F WW domain-PY-ligand interaction is 15.1 +/- 1.2 microM, only slightly higher than that observed for the wild-type WW domain interaction (5.9 +/- 0.33 microM). The W17F WW domain is a natively unfolded protein which adopts a native conformation upon PY-ligand binding.

摘要

WW结构域采用紧凑的三链反平行β折叠结构,通过与基于xPPxY的蛋白质配体结合来介导蛋白质-蛋白质相互作用,例如源自p53结合蛋白-2的PY配体(EYPPYPPPPYPSG)。该结构域得名于其保守的色氨酸残基,将这些残基替换为苯丙氨酸,以便评估它们在结构完整性和配体结合中的重要性。采用生物物理方法将W17F、W39F和W17F/W39F WW结构域与野生型蛋白进行比较。数据表明,将色氨酸39替换为苯丙氨酸(W39F)不会破坏WW结构域变体的结构,但会消除配体结合。相比之下,W17F WW结构域变体即使没有完全展开也基本处于未折叠状态;然而,该变体经历了由PY配体诱导的无序到有序(折叠)的转变。W17F WW结构域与PY配体相互作用的解离常数为15.1±1.2微摩尔,仅略高于野生型WW结构域相互作用时观察到的值(5.9±0.33微摩尔)。W17F WW结构域是一种天然未折叠的蛋白质,在与PY配体结合时会形成天然构象。

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