Lin Xin, Tan Suet Mien, Law S K Alex, Torres Jaume
School of Biological Sciences, Nanyang Technological University, 637551, Singapore.
Proteins. 2006 Apr 1;63(1):16-23. doi: 10.1002/prot.20882.
Integrins are heterodimers, but recent in vitro and in vivo experiments suggest that they are also able to associate through their transmembrane domains to form homomeric interactions. Two fundamental questions are the biological relevance of these aggregates and their form of interaction in the membrane domain. Although in vitro experiments have shown the involvement of a GxxxG-like motif, several crosslinking in vivo data are consistent with an almost opposite form of interaction between the transmembrane alpha-helices. In the present work, we have explored these two questions using molecular dynamics simulations for all available integrin types. We have tested the hypothesis that homomeric interactions are evolutionary conserved, and essential for the cell, using conservative substitutions to filter out nonnative interactions. Our results show that two models, one involving a GxxxG-like motif (model I) and an almost opposite form of interaction (model II) are conserved across all alpha and beta integrin types, both in homodimers and homotrimers, with different specificities. No conserved interaction was found for homotetramers. Our results are completely independent from experimental data, both during molecular dynamics simulations and in the selection of the correct models. We rationalize previous seemingly conflicting findings regarding the nature of integrin interhelical homomeric interactions.
整合素是异源二聚体,但最近的体外和体内实验表明,它们也能够通过其跨膜结构域相互结合形成同源相互作用。两个基本问题是这些聚集体的生物学相关性以及它们在膜结构域中的相互作用形式。尽管体外实验表明存在类似GxxxG的基序参与其中,但一些体内交联数据与跨膜α螺旋之间几乎相反的相互作用形式一致。在本工作中,我们使用分子动力学模拟对所有可用的整合素类型探讨了这两个问题。我们通过保守替换以滤除非天然相互作用,检验了同源相互作用在进化上保守且对细胞至关重要的假设。我们的结果表明,两种模型,一种涉及类似GxxxG的基序(模型I)和几乎相反的相互作用形式(模型II),在所有α和β整合素类型中,无论是同二聚体还是同三聚体,都具有不同的特异性且保守存在。对于同四聚体未发现保守相互作用。我们的结果在分子动力学模拟过程以及正确模型的选择方面都完全独立于实验数据。我们对先前关于整合素螺旋间同源相互作用性质的看似相互矛盾的发现进行了合理化解释。