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Modeling and experimental validation of the binary complex of the plectin actin-binding domain and the first pair of fibronectin type III (FNIII) domains of the β4 integrin

机译:Plectin肌动蛋白结合域和β4整联蛋白的第一对III型FN(FNIII)域的二元复合物的建模和实验验证

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摘要

The binding of plectin to the β4 subunit of the α6β4 integrin is a critical step in the formation of hemidesmosomes. An important interaction between these two proteins occurs between the actin-binding domain (ABD) of plectin and the first pair of fibronectin type III (FNIII) domains and a small part of the connecting segment of β4. Previously, a few amino acids, critical for this interaction, were identified in both plectin and β4 and mapped on the crystal structures of the ABD of plectin and the first pair of FNIII domains of β4. In the present study, we used this biochemical information and protein-protein docking calculations to construct a model of the binary complex between these two protein domains. The top scoring computational model predicts that the calponin-homology 1 (CH1) domain of the ABD associates with the first and the second FNIII domains of β4. Our mutational analysis of the residues at the proposed interface of both the FNIII and the CH1 domains is in agreement with the suggested interaction model. Computational simulations to predict protein motions suggest that the exact model of FNIII and plectin CH1 interaction might well differ in detail from the suggested model due to the conformational plasticity of the FNIII domains, which might lead to a closely related but different mode of interaction with the plectin-ABD. Furthermore, we show that Ser-1325 in the connecting segment of β4 appears to be essential for the recruitment of plectin into hemidesmosomes in vivo. This is consistent with the proposed model and previously published mutational data. In conclusion, our data support a model in which the CH1 domain of the plectin-ABD associates with the groove between the two FNIII domains of β4.
机译:凝集素与α6β4整联蛋白的β4亚基的结合是形成半桥粒的关键步骤。这两种蛋白质之间的重要相互作用发生在凝集素的肌动蛋白结合结构域(ABD)与第一对纤连蛋白III型(FNIII)结构域和一小部分β4连接片段之间。以前,在Plectin和β4中都鉴定了一些对该相互作用至关重要的氨基酸,并定位在Plectin ABD的晶体结构和β4的第一对FNIII结构域上。在本研究中,我们使用该生化信息和蛋白质-蛋白质对接计算来构建这两个蛋白质域之间的二元复合物模型。得分最高的计算模型预测,ABD的钙离子蛋白同源性1(CH1)域与β4的第一个和第二个FNIII域相关联。我们对FNIII和CH1域的拟议界面处残基的突变分析与所建议的相互作用模型相符。预测蛋白质运动的计算模拟表明,由于FNIII域的构象可塑性,FNIII和Plectin CH1相互作用的确切模型可能与建议的模型有很大的不同,这可能导致与FNIII域密切相关但互不相关的相互作用方式。凝集素-ABD。此外,我们显示,β4连接片段中的Ser-1325似乎对于体内血凝素募集到血凝素中至关重要。这与提出的模型和先前发表的突变数据一致。总之,我们的数据支持了其中Plectin-ABD的CH1结构域与β4的两个FNIII结构域之间的凹槽相关的模型。

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    Pereda, José M. de;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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