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TEAD 突变的分子和结构特征导致 Sveinsson 型脉络膜视网膜萎缩。

Molecular and structural characterization of a TEAD mutation at the origin of Sveinsson's chorioretinal atrophy.

机构信息

Disease Area Oncology, Novartis Institutes for Biomedical Research, Basel, Switzerland.

Chemical Biology & Therapeutics, Novartis Institutes for Biomedical Research, Basel, Switzerland.

出版信息

FEBS J. 2019 Jun;286(12):2381-2398. doi: 10.1111/febs.14817. Epub 2019 Apr 11.

DOI:10.1111/febs.14817
PMID:30903741
Abstract

Four TEAD transcription factors (TEAD1-4) mediate the signalling output of the Hippo pathway that controls organ size in humans. TEAD transcriptional activity is regulated via interactions with the YAP, TAZ and VGLL proteins. A mutation in the TEAD1 gene, Tyr421His, has been identified in patients suffering from Sveinsson's chorioretinal atrophy (SCA), an autosomal dominant eye disease. This mutation prevents the YAP/TAZ:TEAD1 interaction. In this study, we measure the affinity of YAP, TAZ and VGLL1 for the four human TEADs and find that they have a similar affinity for all TEADs. We quantitate the effect of the mutation found in SCA patients and show that it destabilizes the YAP/TAZ:TEAD interaction by about 3 kcal·mol . We determine the structure of YAP in complex with this mutant form of TEAD and show that the histidine residue adopts different conformations at the binding interface. The presence of this flexible residue induces the destabilization of several H-bonds and the loss of van der Waals contacts, which explains why the Tyr421His mutation has such a large destabilizing effect on the formation of the YAP:TEAD complex. DATABASE: The crystallographic data have been deposited at the RSCB Protein Data Bank (PDB, www.pdb.org) with the access codes: 6HIL (wt :Tyr421His ), 6HIK (wt :Tyr429His ).

摘要

四个 TEAD 转录因子(TEAD1-4)介导 Hippo 通路的信号输出,该通路控制人类器官的大小。TEAD 转录活性通过与 YAP、TAZ 和 VGLL 蛋白的相互作用来调节。在患有 Sveinsson 脉络膜视网膜萎缩症(SCA)的患者中,已经鉴定出 TEAD1 基因中的 Tyr421His 突变,这是一种常染色体显性眼病。该突变阻止了 YAP/TAZ:TEAD1 的相互作用。在这项研究中,我们测量了 YAP、TAZ 和 VGLL1 对四种人类 TEAD 的亲和力,发现它们对所有 TEAD 都具有相似的亲和力。我们定量分析了 SCA 患者中发现的突变的影响,并表明它通过大约 3 kcal·mol 使 YAP/TAZ:TEAD 相互作用不稳定。我们确定了 YAP 与这种突变形式的 TEAD 形成的复合物的结构,并表明组氨酸残基在结合界面上采用不同的构象。该柔性残基的存在诱导了几个氢键的失稳和范德华接触的丧失,这解释了为什么 Tyr421His 突变对 YAP:TEAD 复合物的形成具有如此大的失稳作用。数据库:晶体学数据已被提交到 RCSB 蛋白质数据库(PDB,www.pdb.org),访问代码为:6HIL(wt:Tyr421His),6HIK(wt:Tyr429His)。

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