School of Biotechnology, Ho Chi Minh International University, Ho Chi Minh City, Vietnam.
PLoS One. 2011;6(8):e22970. doi: 10.1371/journal.pone.0022970. Epub 2011 Aug 2.
M2 channel, an influenza virus transmembrane protein, serves as an important target for antiviral drug design. There are still discordances concerning the role of some residues involved in proton transfer as well as the mechanism of inhibition by commercial drugs. The viral M2 proteins show high conservativity; about 3/4 of the positions are occupied by one residue in over 95%. Nine M2 proteins from the H3N2 strain and possibly two proteins from H2N2 strains make a phylogenic cluster closely related to 2RLF. The variability range is limited to 4 residues/position with one exception. The 2RLF protein stands out by the presence of 2 serines at the positions 19 and 50, which are in most other M2 proteins occupied by cysteines. The study of correlated mutations shows that there are several positions with significant mutational correlation that have not been described so far as functionally important. That there are 5 more residues potentially involved in the M2 mechanism of action. The original software used in this work (Consensus Constructor, SSSSg, Corm, Talana) is freely accessible as stand-alone offline applications upon request to the authors. The other software used in this work is freely available online for noncommercial purposes at public services on bioinformatics such as ExPASy or NCBI. The study on mutational variability, evolutionary relationship, and correlated mutation presented in this paper is a potential way to explain more completely the role of significant factors in proton channel action and to clarify the inhibition mechanism by specific drugs.
M2 通道是一种流感病毒跨膜蛋白,是抗病毒药物设计的重要靶点。目前,一些参与质子转移的残基的作用以及商业药物的抑制机制仍存在争议。病毒 M2 蛋白具有高度保守性;超过 95%的位置有 3/4以上被一种残基占据。来自 H3N2 株的 9 种 M2 蛋白和可能来自 H2N2 株的 2 种蛋白与 2RLF 一起形成一个密切相关的系统发育簇。变异性范围仅限于 4 个残基/位置,只有一个例外。2RLF 蛋白的特点是第 19 和 50 位有 2 个丝氨酸,而在大多数其他 M2 蛋白中,这两个位置被半胱氨酸占据。相关突变的研究表明,有几个位置的突变相关性显著,但迄今为止尚未被描述为具有重要功能。还有 5 个残基可能参与 M2 的作用机制。本文中使用的原始软件(Consensus Constructor、SSSSg、Corm、Talana)可根据作者的要求作为独立的离线应用程序免费获得。本文中使用的其他软件可在 ExPASy 或 NCBI 等生物信息学公共服务上免费在线获得,仅供非商业用途。本文中提出的关于突变可变性、进化关系和相关突变的研究,为更全面地解释质子通道作用中的重要因素以及阐明特定药物的抑制机制提供了一种可能的方法。