Soumya Neelagiri, Tandan Hitendra, Damre Mangesh V, Gangwal Rahul P, Sangamwar Abhay T, Singh Sushma
Department of Biotechnology, National Institute of Pharmaceutical Education and Research, SAS Nagar, Mohali 160062, Punjab, India.
Department of Pharmacoinformatics, National Institute of Pharmaceutical Education and Research, SAS Nagar, Mohali 160062, Punjab, India.
Gene. 2016 Apr 15;580(2):125-133. doi: 10.1016/j.gene.2016.01.011. Epub 2016 Jan 12.
AMP-acetyl CoA synthetase (AMP-AceCS) is a key enzyme which catalyzes the activation of acetate to acetyl CoA, an important intermediate at the cross roads of various anabolic and catabolic pathways. Multiple sequence alignment of Leishmania donovani AceCS with other organisms revealed the presence of a highly conserved leucine residue at 684 position which is known to be crucial for acetylation by protein acetyl transferases in other organisms. In an attempt to understand the role of leucine residue at 684 position in L. donovani acetyl CoA synthetase (LdAceCS), it was mutated to proline (P) by site directed mutagenesis. Kinetic analysis of the L684P-LdAceCS mutant revealed approximately two fold increased binding affinity with acetate, whereas fivefold decreased affinity was observed with ATP. There was insignificant change in secondary structure as revealed by CD however, two fold decreased fluorescence intensity was observed at an emission maxima of 340 nm. Interestingly, L684P mutation abolished the acetylation of the mutant enzyme indicating the importance of L684 in acetylation of the enzyme. Changes in biochemical parameters of the mutant protein were validated by homology modeling of the wild type and mutant LdAceCS enzyme using Salmonella enterica AceCS crystal structure as template. Our data provides evidence for the role of leucine 684 residue in substrate recognition, catalysis and acetylation of the AceCS enzyme.
AMP-乙酰辅酶A合成酶(AMP-AceCS)是一种关键酶,它催化乙酸盐激活生成乙酰辅酶A,乙酰辅酶A是各种合成代谢和分解代谢途径交叉点上的重要中间体。杜氏利什曼原虫AceCS与其他生物的多序列比对显示,在684位存在一个高度保守的亮氨酸残基,已知该残基对其他生物中蛋白质乙酰转移酶的乙酰化作用至关重要。为了了解杜氏利什曼原虫乙酰辅酶A合成酶(LdAceCS)中684位亮氨酸残基的作用,通过定点诱变将其突变为脯氨酸(P)。对L684P-LdAceCS突变体的动力学分析显示,其与乙酸盐的结合亲和力增加了约两倍,而与ATP的亲和力则降低了五倍。圆二色光谱显示二级结构没有显著变化,然而,在340nm发射最大值处观察到荧光强度降低了两倍。有趣的是,L684P突变消除了突变酶的乙酰化作用,表明L684在该酶的乙酰化过程中具有重要作用。利用肠炎沙门氏菌AceCS晶体结构作为模板,通过对野生型和突变型LdAceCS酶进行同源建模,验证了突变蛋白生化参数的变化。我们的数据为亮氨酸684残基在AceCS酶的底物识别、催化和乙酰化中的作用提供了证据。