Bioinformatics Division, Osmania University, Hyderabad 500007 Andhra Pradesh, India.
J Mol Model. 2013 Apr;19(4):1891-900. doi: 10.1007/s00894-012-1746-z. Epub 2013 Jan 19.
The cytoplasm of a eukaryotic cell consists of a wide variety of membrane bound cell organelles and continuous flow of proteins amongst these organelles is a major challenge and must be stringently maintained in order to continue the correct biochemical functioning inside a cell. The transportation of various proteins amongst these organelles is facilitated by a vast Tubulo-vesicular network mediated by carrier proteins. The Rabs belong to small G proteins super family involved in the regulation and vesicle transport in between the organelles by shuttling between the active GTP and inactive GDP bound states. In this paper we put forth the homology modeling and docking studies of Rab6A proteins (Mus musculus, Gallus gallus and Caenorhabditis elegans) with GTP, GMP-PNP and GDP molecules and a comparative study between these proteins is done to identify key residues out of which serine of the phosphate binding loop (P - loop) and aspartic acid showed prominent interactions with the GTP, GDP and GMP-PNP nucleotides and cogitate that aspartic acid might also help in the stabilization of the switch I region of the Rab proteins besides serine.
真核细胞的细胞质由各种膜结合的细胞器组成,蛋白质在这些细胞器之间的持续流动是一个主要挑战,必须严格维持,以维持细胞内正确的生化功能。各种蛋白质在这些细胞器之间的运输是通过由载体蛋白介导的巨大管状泡状网络来实现的。Rabs 属于小 G 蛋白超家族,通过在细胞器之间穿梭于活性 GTP 和非活性 GDP 结合状态,参与调节和囊泡运输。在本文中,我们提出了 Rab6A 蛋白(Mus musculus、Gallus gallus 和 Caenorhabditis elegans)与 GTP、GMP-PNP 和 GDP 分子的同源建模和对接研究,并对这些蛋白进行了比较研究,以确定关键残基,其中磷酸结合环(P-环)的丝氨酸和天冬氨酸与 GTP、GDP 和 GMP-PNP 核苷酸表现出明显的相互作用,并且认为天冬氨酸除了丝氨酸外,还可能有助于 Rab 蛋白的开关 I 区域的稳定。