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首页> 外文期刊>Biochemistry >Molecular Origin of the Binding of WWOX Tumor Suppressor to ErbB4 Receptor Tyrosine Kinase
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Molecular Origin of the Binding of WWOX Tumor Suppressor to ErbB4 Receptor Tyrosine Kinase

机译:WWOX肿瘤抑制剂与ErbB4受体酪氨酸激酶结合的分子起源

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摘要

The ability of WWOX tumor suppressor to physically associate with the intracellular domain (ICD) of ErbB4 receptor tyrosine kinase is believed to play a central role in downregulating the transcriptional function of the latter. Herein, using various biophysical methods, we show that while the WW1 domain of WWOX binds to PPXY motifs located within the ICD of ErbB4 in a physiologically relevant manner, the WW2 domain does not. Importantly, while the WW1 domain absolutely requires the integrity of the PPXY consensus sequence, nonconsensus residues within and flanking this motif do not appear to be critical for binding. This strongly suggests that the WW1 domain of WWOX is rather promiscuous toward its cellular partners. We also provide evidence that the lack of binding of the WW2 domain of WWOX to PPXY motifs is due to the replacement of a signature tryptophan, lining the hydrophobic ligand binding groove, with tyrosine (Y85). Consistent with this notion, the Y85W substitution within the WW2 domain exquisitely restores its binding to PPXY motifs in a manner akin to the binding of the WW1 domain of WWOX. Of particular significance is the observation that the WW2 domain augments the binding of the WW1 domain to ErbB4, implying that the former serves as a chaperone within the context of the WW1?WW2 tandem module of WWOX in agreement with our findings reported previously. Altogether, our study sheds new light on the molecular basis of an important WW?ligand interaction involved in mediating a plethora of cellular processes.
机译:WWOX肿瘤抑制物与ErbB4受体酪氨酸激酶的细胞内结构域(ICD)物理缔合的能力被认为在下调后者的转录功能中起核心作用。在这里,我们使用各种生物物理方法显示,虽然WWOX的WW1结构域以生理相关的方式与位于ErbB4的ICD内的PPXY基序结合,但WW2结构域却没有。重要的是,尽管WW1域绝对需要PPXY共有序列的完整性,但该基序内部和侧面的非共有残基对于结合而言似乎并不重要。这强烈表明,WWOX的WW1域与其细胞伴侣相当混杂。我们还提供了证据,表明WWOX的WW2域与PPXY基序之间缺乏结合是由于酪氨酸(Y85)取代了疏水色配体结合凹槽内衬的签名色氨酸的缘故。与此概念一致,WW2域中的Y85W取代以类似于WWOX WW1域的结合的方式精美地恢复了其与PPXY基序的结合。特别有意义的是观察到WW2域增强了WW1域与ErbB4的结合,这暗示前者在WWOX的WW1?WW2串联模块的背景下充当分子伴侣,这与我们先前报道的发现一致。总之,我们的研究从重要的WW配体相互作用的分子基础上阐明了介导大量细胞过程的作用。

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