Suppr超能文献

α7整合素可变剪接结构域X1和X2中不同的酸性簇和疏水残基决定了对层粘连蛋白异构体的特异性。

Distinct acidic clusters and hydrophobic residues in the alternative splice domains X1 and X2 of alpha7 integrins define specificity for laminin isoforms.

作者信息

von der Mark Helga, Pöschl Ernst, Lanig Harald, Sasaki Takako, Deutzman Rainer, von der Mark Klaus

机构信息

Department of Experimental Medicine I, Nikolaus - Fiebiger Center of Molecular Medicine, University of Erlangen - Nuernberg, 91054 Erlangen, Germany.

出版信息

J Mol Biol. 2007 Aug 31;371(5):1188-203. doi: 10.1016/j.jmb.2007.05.074. Epub 2007 Jun 2.

Abstract

The binding specificity of alpha7beta1 integrins for different laminin isoforms is defined by the X1 and X2 splice domains located in the beta-propeller domain of the alpha7 subunit. In order to gain insight into the mechanism of specific laminin-integrin interactions, we defined laminin-binding epitopes of the alpha7X1 and -X2 domains by single amino acid substitutions and domain swapping between X1 and X2. The interaction of mutated, recombinantly prepared alpha7X1beta1 and alpha7X2beta1 heterodimers with various laminin isoforms was studied by surface plasmon resonance and solid phase binding assays. The data show that distinct clusters of surface-exposed acidic residues located in different positions of the X1 and the X2 loops are responsible for the specific recognition of laminins. These residues are conserved between the respective X1 or X2 splice domains of the alpha7 chains of different species, some also in the corresponding X1/X2 splice domains of alpha6 integrin. Interestingly, ligand binding was also modulated by mutating surface-exposed hydrophobic residues (alpha7X1L205, alpha7X2Y208) at positions corresponding to the fibronectin binding synergy site in alpha5beta1 integrin. Mutations in X1 that affected binding to laminin-1 also affected binding to laminin-8 and -10, but not to the same extent, thus allowing conclusions on the specific role of individual surface epitopes in the selective recognition of laminin-1 versus laminins -8 and -10. The role of the identified epitopes was confirmed by molecular dynamics simulations of wild-type integrins and several inactivating mutations. The analysis of laminin isoform interactions with various X1/X2 chimaera lend further support to the key role of negative surface charges and pointed to an essential contribution of the N-terminal TARVEL sequence of the X1 domain for recognition of laminin-8 and -10. In conclusion, specific surface epitopes containing charged and hydrophobic residues are essential for ligand binding and define specific interactions with laminin isoforms.

摘要

α7β1整合素对不同层粘连蛋白异构体的结合特异性由位于α7亚基β-螺旋桨结构域中的X1和X2剪接结构域决定。为了深入了解层粘连蛋白与整合素特异性相互作用的机制,我们通过单氨基酸取代以及X1和X2之间的结构域交换来确定α7X1和-X2结构域的层粘连蛋白结合表位。通过表面等离子体共振和固相结合试验研究了重组制备的突变型α7X1β1和α7X2β1异二聚体与各种层粘连蛋白异构体的相互作用。数据表明,位于X1和X2环不同位置的表面暴露酸性残基的不同簇负责层粘连蛋白的特异性识别。这些残基在不同物种α7链各自的X1或X2剪接结构域之间保守,一些在α6整合素的相应X1/X2剪接结构域中也保守。有趣的是,通过突变与α5β1整合素中纤连蛋白结合协同位点相对应位置的表面暴露疏水残基(α7X1L205、α7X2Y208)也可调节配体结合。影响与层粘连蛋白-1结合的X1突变也影响与层粘连蛋白-8和-10的结合,但程度不同,从而可以推断单个表面表位在层粘连蛋白-1与层粘连蛋白-8和-10的选择性识别中的具体作用。通过野生型整合素和几种失活突变的分子动力学模拟证实了所鉴定表位的作用。对层粘连蛋白异构体与各种X1/X2嵌合体相互作用的分析进一步支持了负表面电荷的关键作用,并指出X1结构域的N端TARVEL序列对层粘连蛋白-8和-10的识别有重要贡献。总之,含有带电和疏水残基的特异性表面表位对于配体结合至关重要,并决定了与层粘连蛋白异构体的特异性相互作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验