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Deltex 抑制因子中串联 WW 结构域对 Notch 结合的特异性及自身调节作用

Specificity and autoregulation of Notch binding by tandem WW domains in suppressor of Deltex.

作者信息

Jennings Martin D, Blankley Richard T, Baron Martin, Golovanov Alexander P, Avis Johanna M

机构信息

Faculty of Life Sciences, Manchester Interdisciplinary Biocentre, University of Manchester, 131 Princess Street, Manchester M1 7DN.

Faculty of Life Sciences, Michael Smith Building, University of Manchester, Manchester M13 9PT, United Kingdom.

出版信息

J Biol Chem. 2007 Sep 28;282(39):29032-29042. doi: 10.1074/jbc.M703453200. Epub 2007 Jul 26.

Abstract

WW domains target proline-tyrosine (PY) motifs and frequently function as tandem pairs. When studied in isolation, single WW domains are notably promiscuous and regulatory mechanisms are undoubtedly required to ensure selective interactions. Here, we show that the fourth WW domain (WW4) of Suppressor of Deltex, a modular Nedd4-like protein that down-regulates the Notch receptor, is the primary mediator of a direct interaction with a Notch-PY motif. A natural Trp to Phe substitution in WW4 reduces its affinity for general PY sequences and enhances selective interaction with the Notch-PY motif via compensatory specificity-determining interactions with PY-flanking residues. When WW4 is paired with WW3, domain-domain association, impeding proper folding, competes with Notch-PY binding to WW4. This novel mode of autoinhibition is relieved by binding of another ligand to WW3. Such cooperativity may facilitate the transient regulatory interactions observed in vivo between Su(dx) and Notch in the endocytic pathway. The highly conserved tandem arrangement of WW domains in Nedd4 proteins, and similar arrangements in more diverse proteins, suggests domain-domain communication may be integral to regulation of their associated cellular activities.

摘要

WW结构域靶向脯氨酸 - 酪氨酸(PY)基序,且常常以串联形式发挥作用。单独研究时,单个WW结构域具有显著的多配体特性,因此无疑需要调控机制来确保选择性相互作用。在此,我们表明,Deltex抑制因子的第四个WW结构域(WW4)是一种模块化的类Nedd4蛋白,可下调Notch受体,它是与Notch - PY基序直接相互作用的主要介导因子。WW4中一个天然的色氨酸到苯丙氨酸的替换降低了其对一般PY序列的亲和力,并通过与PY侧翼残基的补偿性特异性决定相互作用增强了与Notch - PY基序的选择性相互作用。当WW4与WW3配对时,结构域 - 结构域的缔合会阻碍正确折叠,与Notch - PY与WW4的结合相互竞争。另一种配体与WW3的结合可解除这种新型的自抑制模式。这种协同作用可能有助于在内吞途径中观察到的体内Su(dx)和Notch之间的瞬时调节相互作用。Nedd4蛋白中WW结构域高度保守的串联排列,以及更多样化蛋白质中的类似排列,表明结构域 - 结构域通讯可能是调节其相关细胞活动所必需的。

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Versatile communication strategies among tandem WW domain repeats.串联WW结构域重复序列间的通用通信策略。
Exp Biol Med (Maywood). 2015 Mar;240(3):351-60. doi: 10.1177/1535370214566558. Epub 2015 Feb 20.

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