Basak Papri, Maitra-Majee Susmita, Das Jayanta Kumar, Mukherjee Abhishek, Ghosh Dastidar Shubhra, Pal Choudhury Pabitra, Lahiri Majumder Arun
Division of Plant Biology, Bose Institute (Centenary Campus), Kolkata, West Bengal, India.
Applied Statistics Unit, Indian Statistical Institute, Kolkata, West Bengal, India.
PLoS One. 2017 Sep 26;12(9):e0185351. doi: 10.1371/journal.pone.0185351. eCollection 2017.
A molecular evolutionary analysis of a well conserved protein helps to determine the essential amino acids in the core catalytic region. Based on the chemical properties of amino acid residues, phylogenetic analysis of a total of 172 homologous sequences of a highly conserved enzyme, L-myo-inositol 1-phosphate synthase or MIPS from evolutionarily diverse organisms was performed. This study revealed the presence of six phylogenetically conserved blocks, out of which four embrace the catalytic core of the functional protein. Further, specific amino acid modifications targeting the lysine residues, known to be important for MIPS catalysis, were performed at the catalytic site of a MIPS from monocotyledonous model plant, Oryza sativa (OsMIPS1). Following this study, OsMIPS mutants with deletion or replacement of lysine residues in the conserved blocks were made. Based on the enzyme kinetics performed on the deletion/replacement mutants, phylogenetic and structural comparison with the already established crystal structures from non-plant sources, an evolutionarily conserved peptide stretch was identified at the active pocket which contains the two most important lysine residues essential for catalytic activity.
对一种高度保守的蛋白质进行分子进化分析,有助于确定核心催化区域中的必需氨基酸。基于氨基酸残基的化学性质,对来自进化上不同生物的172个高度保守的酶L-肌醇1-磷酸合酶(MIPS)的同源序列进行了系统发育分析。这项研究揭示了六个系统发育保守区域的存在,其中四个区域包含功能蛋白的催化核心。此外,在单子叶模式植物水稻(OsMIPS1)的MIPS催化位点,针对已知对MIPS催化很重要的赖氨酸残基进行了特定的氨基酸修饰。在这项研究之后,构建了在保守区域中缺失或替换赖氨酸残基的OsMIPS突变体。基于对缺失/替换突变体进行的酶动力学分析、与非植物来源已建立的晶体结构进行的系统发育和结构比较,在活性口袋中鉴定出一个进化上保守的肽段,该肽段包含催化活性所必需的两个最重要的赖氨酸残基。