Matsumoto Atsushi, Kamata Tetsuji, Takagi Junichi, Iwasaki Kenji, Yura Kei
Quantum Bioinformatics Team, Center for Computational Science and Engineering, Japan Atomic Energy Agency, 8-1 Umemidai, Kizugawa, Kyoto 619-0215, Japan.
Biophys J. 2008 Sep 15;95(6):2895-908. doi: 10.1529/biophysj.108.131045. Epub 2008 May 30.
Integrin, a membrane protein with a huge extracellular domain, participates in cell-cell and cell-extracellular-matrix interactions for metazoan. A group of integrins is known to perform a large-scale structural change when the protein is activated, but the activation mechanism and generality of the conformational change remain to be elucidated. We performed normal-mode analysis of the elastic network model on integrin alpha(V)beta(3) ectodomain in the bent form and identified key residues that influenced molecular motions. Iterative normal-mode calculations demonstrated that the specific nonbonded interactions involving the key residues work as a snap to keep integrin in the bent form. The importance of the key residues for the conformational change was further verified by mutation experiments, in which integrin alpha(IIb)beta(3) was used. The conservation pattern of amino acid residues among the integrin family showed that the characteristic pattern of residues seen around these key residues is found in the limited groups of integrin beta-chains. This conservation pattern suggests that the molecular mechanism of the conformational change relying on the interactions found in integrin alpha(V)beta(3) is unique to the limited types of integrins.
整合素是一种具有巨大细胞外结构域的膜蛋白,参与后生动物的细胞间和细胞与细胞外基质的相互作用。已知一组整合素在蛋白被激活时会发生大规模的结构变化,但其激活机制和构象变化的普遍性仍有待阐明。我们对弯曲形式的整合素α(V)β(3)胞外域进行了弹性网络模型的正常模式分析,并确定了影响分子运动的关键残基。迭代正常模式计算表明,涉及关键残基的特定非键相互作用起到了卡扣的作用,使整合素保持弯曲形式。通过使用整合素α(IIb)β(3)的突变实验,进一步验证了关键残基对构象变化的重要性。整合素家族中氨基酸残基的保守模式表明,在这些关键残基周围发现的特征性残基模式仅存在于有限的整合素β链组中。这种保守模式表明,依赖于整合素α(V)β(3)中发现的相互作用的构象变化分子机制是有限类型整合素所特有的。