首页> 外文期刊>The Journal of biological chemistry >Solution Structure of the Phosphotyrosine Binding (PTB) Domain of Human Tensin2 Protein in Complex with Deleted in Liver Cancer 1 (DLC1) Peptide Reveals a Novel Peptide Binding Mode
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Solution Structure of the Phosphotyrosine Binding (PTB) Domain of Human Tensin2 Protein in Complex with Deleted in Liver Cancer 1 (DLC1) Peptide Reveals a Novel Peptide Binding Mode

机译:在肝癌1(DLC1)肽中缺失的人体TYSIN2蛋白的磷酸酪氨酸结合(PTB)结构域的溶液结构揭示了一种新的肽结合模式

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The protein deleted in liver cancer 1 (DLC1) interacts with the tensin family of focal adhesion proteins to play a role as a tumor suppressor in a wide spectrum of human cancers. This interaction has been proven to be crucial to the oncogenic inhibitory capacity and focal adhesion localization of DLC1. The phosphotyrosine binding (PTB) domain of tensin2 predominantly interacts with a novel site on DLC1, not the canonical NPXY motif. In this study, we characterized this interaction biochemically and determined the complex structure of tensin2 PTB domain with DLC1 peptide by NMR spectroscopy. Our HADDOCK-derived complex structure model elucidates the molecular mechanism by which tensin2 PTB domain recognizes DLC1 peptide and reveals a PTB-peptide binding mode that is unique in that peptide occupies the binding site opposite to the canonical NPXY motif interaction site with the peptide utilizing a non-canonical binding motif to bind in an extended conformation and that the N-terminal helix, which is unique to some Shc- and Dab-like PTB domains, is required for binding. Mutations of crucial residues defined for the PTB-DLC1 interaction affected the co-localization of DLC1 and tensin2 in cells and abolished DLC1-mediated growth suppression of hepatocellular carcinoma cells. This tensin2 PTB-DLC1 peptide complex with a novel binding mode extends the versatile binding repertoire of the PTB domains in mediating diverse cellular signaling pathways as well as provides a molecular and structural basis for better understanding the tumor-suppressive activity of DLC1 and tensin2.
机译:在肝癌1(DLC1)中缺失的蛋白质与张素家族的局灶性粘附蛋白相互作用,以在广谱的人类癌症中作为肿瘤抑制剂的作用。已被证明这种相互作用对DLC1的致癌抑制能力和局灶性粘附定位至关重要。 Tensin2的磷酸酪氨酸结合(PTB)结构域主要与DLC1上的新网站相互作用,而不是规范NPXY主题。在这项研究中,我们将这种相互作用生物化学和通过NMR光谱法通过DLC1肽确定了Tensin2 PTB结构域的复杂结构。我们的甲基鳕衍生的复杂结构模型阐明了Tensin2 PTB结构域识别DLC1肽的分子机制,并揭示了肽中独特的PTB肽结合模式,该肽占据与典型NPXY基序相互作用位点相对的结合位点,利用A肽非规范结合基序在延伸构象中结合,并且对于一些SHC和DAB样PTB结构域是独特的N-末端螺旋,是结合所必需的。为PTB-DLC1相互作用定义的关键残留物的突变影响了DLC1和TENIN2在细胞中的共定位,并废除了DLC1介导的肝细胞癌细胞的生长抑制。该Tensin2 PTB-DLC1肽复合物与新型结合模式延伸了PTB结构域的多功能结合曲目,在调解各种细胞信号传导途径中,并为更好地理解DLC1和Tensin2的肿瘤抑制活性提供分子和结构依据。

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