School of Life Sciences, Jawaharlal Nehru University, 110067 New Delhi, India.
School of Life Sciences, Jawaharlal Nehru University, 110067 New Delhi, India.
Biochim Biophys Acta Proteins Proteom. 2020 Jan;1868(1):140296. doi: 10.1016/j.bbapap.2019.140296. Epub 2019 Oct 30.
Entamoeba histolytica infection is highly prevalent in developing countries across the globe. The ATP synthesis in this pathogen is solely dependent on the glycolysis pathway where pyruvate kinase (Pyk) catalyzes the final reaction. Here, we have cloned, overexpressed and purified the pyruvate kinase (EhPyk) from E. histolytica. EhPyk is the shortest currently known Pyk till date as it contains only two of the three characterized domains when compared to the other homologues and our phylogenetic analysis places it on a distinct branch from the known type I/II Pyks. Our purification results suggested that it exists as a homodimer in solution. The kinetic characterization showed that EhPyk has maximum activity at pH 7.5 where it exhibited Michaelis-Menten's kinetics for phosphoenolpyruvate with a K of 0.23 mM, and it lost its activity at both the acidic pH 4.0 and basic pH 10.0. We also determined the key secondary structural elements of EhPyk at different pH values. MD simulation of EhPyk structure at different pH values suggested that it is most stable at pH 7.0, while least stable at pH 10.0 followed by pH 4.0. Together, our computational simulations correlate well with the experimental studies. In summary, this study expands the current understanding of the EhPyk identified earlier in the amoebic genome and provides the first characterization of this bacterially expressed protein.
溶组织内阿米巴感染在全球发展中国家非常普遍。该病原体的 ATP 合成完全依赖于糖酵解途径,其中丙酮酸激酶(Pyk)催化最后一步反应。在此,我们从溶组织内阿米巴中克隆、过表达和纯化了丙酮酸激酶(EhPyk)。与其他同源物相比,EhPyk 是目前已知最短的 Pyk,仅包含三个特征结构域中的两个,而我们的系统发育分析将其置于与已知的 I/II 型 Pyks 不同的分支上。我们的纯化结果表明,它以同源二聚体的形式存在于溶液中。动力学特征表明,EhPyk 在 pH 7.5 时具有最大活性,在此条件下,它对磷酸烯醇丙酮酸表现出米氏动力学,K 值为 0.23 mM,而在 pH 4.0 和 pH 10.0 时它失去活性。我们还在不同 pH 值下确定了 EhPyk 的关键二级结构元素。EhPyk 结构在不同 pH 值下的 MD 模拟表明,它在 pH 7.0 时最稳定,在 pH 10.0 时最不稳定,其次是 pH 4.0。总的来说,我们的计算模拟与实验研究很好地吻合。综上所述,这项研究扩展了之前在阿米巴基因组中鉴定的 EhPyk 的现有认识,并首次对这种在细菌中表达的蛋白质进行了特征描述。