首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Computational insights into the interaction mechanism of transcription cofactor vestigial-like protein 4 binding to TEA domain transcription factor 4 by molecular dynamics simulation and molecular mechanics generalized Born/surface area) calculation
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Computational insights into the interaction mechanism of transcription cofactor vestigial-like protein 4 binding to TEA domain transcription factor 4 by molecular dynamics simulation and molecular mechanics generalized Born/surface area) calculation

机译:通过分子动力学模拟和分子力学广义出生/表面积的思科辅因子类蛋白4与茶叶域转录因子4结合的转录辅因子类蛋白4的相互作用机制的识别

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摘要

Hippo pathway has been implicated in the suppression of tissue overgrowth and tumor formation by restricting the oncogenic activity of Yes-associated protein (YAP). Transcription cofactor vestigial-like protein 4 (VGLL4), a natural YAP antagonist that competes with YAP for TEA domain transcription factor 4 (TEAD4) binding is a potential tumor suppressor in human gastric cancer. Comparing with the full length of VGLL4, the Tondu 2 domain of VGLL4 alone is fully functional in inhibiting YAP-induced TEAD4 reporter activity. Revealing the details of binding interaction between VGLL4 and TEAD4 would accelerate the discovery of improved drugs against YAP-driven human cancers. We investigated systematically the interaction mechanisms between TEAD4 and VGLL4 by molecular dynamics (MD) simulation, free energy calculation, and free energy decomposition analysis. Our simulations show that two loops of VGLL4 (residues 218-222 and 251-252) have little binding contribution on VGLL4 binding to TEAD4. The beta 1 strand of VGLL4 plays important role in the contribution to the binding, whereas the alpha 3 helix gives small contribution. More interestingly, the mutation of several residues of alpha 2 helix to alanine results in the contribution of alpha 2 helix decreasing, accompanied by the increased binding contribution of alpha 3 helix. Deletion of the beta 1 or alpha 3 segment of VGLL4 has slight effect on the remaining two segments. Our simulation is well consistent with the in vivo evaluation of the binding of biotinylated VGLL4 peptides to TEAD4 in HepG2 cells by immunological approaches. We expect this work can provide valuable information for design of improved VGLL4 derivative anticancer peptides.
机译:通过限制Yes相关蛋白质(YAP)的致癌活性,河马途径涉及抑制组织过度生长和肿瘤形成。转录Cofactor类蛋白4(VGLL4),一种与茶叶域转录因子4(Tead4)结合的YAP竞争的天然YAP拮抗剂是人胃癌中的潜在肿瘤抑制剂。与Vgll的全长相比,仅Vgll4的Tondu 2结构域在抑制Yap诱导的Tead4报告活动方面具有全功能性。揭示Vgll4和Tead4之间的结合相互作用的细节将加速对yap驱动的人类癌症的改进药物的发现。我们通过分子动力学(MD)模拟,自由能量计算和自由能分解分析系统地调查了Tead4和Vgll4之间的相互作用机制。我们的模拟表明,VGLL4的两个环(残留物218-222和251-252)对VGLL4与TEAD4的结合几乎没有结合贡献。 VGLL4的β1股线在对绑定的贡献中起重要作用,而alpha 3螺旋给出了少贡献。更有趣的是,α2螺旋的几个残基对丙氨酸的突变导致α2螺旋率下降的贡献,伴随着α3螺旋的增长贡献增加。缺失β1或alpha 3段的Vgll4对剩余的两个段具有轻微影响。我们的模拟与通过免疫学方法在HepG2细胞中的生物素化的Vgll4肽与Tead4的结合进行了良好的一致。我们预计这项工作可以为改进的VGLL4衍生物抗癌肽提供有价值的信息。

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