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Allostery mediates ligand binding to WWOX tumor suppressor via a conformational switch

机译:变构通过构象转换介导配体与WWOX肿瘤抑制因子的结合

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摘要

While being devoid of the ability to recognize ligands itself, the WW2 domain is believed to aid ligand binding to the WW1 domain in the context of a WW1-WW2 tandem module of WW domain-containing oxidoreductase (WWOX) tumor suppressor. In an effort to test the generality of this hypothesis, we have undertaken here a detailed biophysical analysis of the binding of WW domains of WWOX alone and in the context of the WW1-WW2 tandem module to an array of putative proline-proline-x-tyrosine (PPXY) ligands. Our data show that while the WW1 domain of WWOX binds to all ligands in a physiologically relevant manner, the WW2 domain does not. Moreover, ligand binding to the WW1 domain in the context of the WW1-WW2 tandem module is two-to-three-fold stronger than when treated alone. We also provide evidence that the WW domains within the WW1-WW2 tandem module physically associate so as to adopt a fixed spatial orientation relative to each other. Of particular note is the observation that the physical association of the WW2 domain with WW1 blocks access to ligands. Consequently, ligand binding to the WW1 domain not only results in the displacement of the WW2 lid but also disrupts the physical association of WW domains in the liganded conformation. Taken together, our study underscores a key role of allosteric communication in the ability of the WW2 orphan domain to chaperone physiological action of the WW1 domain within the context of the WW1-WW2 tandem module of WWOX. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:尽管缺乏识别配体本身的能力,但在含有WW域的氧化还原酶(WWOX)肿瘤抑制因子的WW1-WW2串联模块的背景下,WW2域被认为有助于配体与WW1域结合。为了检验该假设的普遍性,我们在这里对WWOX的WW域的结合以及在WW1-WW2串联模块与一系列假定的脯氨酸-脯氨酸-x-的结合中进行了详细的生物物理分析。酪氨酸(PPXY)配体。我们的数据表明,虽然WWOX的WW1结构域以生理相关的方式与所有配体结合,但WW2结构域却没有。此外,在WW1-WW2串联模块的情况下,配体与WW1域的结合比单独处理时强两倍至三倍。我们还提供了证据,表明WW1-WW2串联模块中的WW域在物理上相关联,从而相对于彼此采用固定的空间方向。特别值得注意的是,WW2域与WW1的物理关联会阻止对配体的访问。因此,配体与WW1结构域的结合不仅导致WW2盖的移位,而且破坏了配体构象中WW结构域的物理缔合。两者合计,我们的研究强调了变构通讯在WWOX的WW1-WW2串联模块的背景下WW2孤儿域对WW1域的分子伴侣生理作用的能力中的关键作用。版权所有(c)2015 John Wiley&Sons,Ltd.

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