Revelation of the Involvement of Rv1651c of Mycobacterium tuberculosis H 37 Rv in Carbohydrate Metabolism

Laxman S. Meena
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Abstract

Tuberculosis (TB) is the major cause of mortality across the world. About one-third of world population is affected by this fatal disease. Mycobacterium tuberculosis H 37 Rv ( M. tuberculosis ) which is a gram- positive bacterium is responsible for the cause of TB. M. tuberculosis is spreading its roots worldwide with the help of various survival mechanisms and making its cure more difficult. In the present study, we have made use of various in-silico tools to predict the properties of Rv1651c which is a member of the PE_PGRS protein family. This manuscript reveals some important aspects of Rv1651c as its function is still unknown. The major part of this study includes protein sequence retrieval, multiple sequence alignment, protein-protein interaction study, epitope prediction, localization, function prediction, structure prediction and its validation, ligand binding prediction and mutational analysis. This protein shows the presence of GTP-binding motifs such as DXXG and GXXXXGK. These motifs can be targeted to mutate the protein and thereby, decrease its stability. This protein also shows similarity with enzyme ribose-5-phosphate isomerase, which performs the function of interconversion of ribose-5-phosphate and ribulose-5-phosphate. This similarity proves to be of great importance as this protein has ribulose-5-phosphate as one of its predicted ligands. All these in-silico generated results of Rv1651c give a hint of it being involved in carbohydrate metabolism. Carbohydrate metabolism is an important process required for the production of energy molecules. Thus, this protein might be targeted to block the carbohydrate metabolism pathway. These prediction-based studies using computational approach might prove to be a successful step towards developing drugs against TB.
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结核分枝杆菌h37rv Rv1651c参与碳水化合物代谢的研究
结核病(TB)是世界各地死亡的主要原因。大约三分之一的世界人口受到这种致命疾病的影响。结核分枝杆菌h37rv(结核分枝杆菌)是一种革兰氏阳性细菌,是导致结核病的原因。在各种生存机制的帮助下,结核分枝杆菌正在世界范围内蔓延,使其更难治愈。在本研究中,我们利用各种计算机工具预测了Rv1651c的性质,Rv1651c是PE_PGRS蛋白家族的成员。这篇手稿揭示了Rv1651c的一些重要方面,因为它的功能仍然未知。本研究的主要内容包括蛋白质序列检索、多序列比对、蛋白-蛋白相互作用研究、表位预测、定位、功能预测、结构预测及其验证、配体结合预测和突变分析。该蛋白显示存在gtp结合基序,如DXXG和GXXXXGK。这些基序可以使蛋白质发生突变,从而降低其稳定性。该蛋白与具有5-磷酸核糖和5-磷酸核酮糖相互转化功能的5-磷酸核糖异构酶相似。这种相似性被证明是非常重要的,因为该蛋白具有5-磷酸核酮糖作为其预测配体之一。所有这些Rv1651c的计算机生成结果都暗示了它参与碳水化合物代谢。碳水化合物代谢是能量分子产生的重要过程。因此,该蛋白可能是阻断碳水化合物代谢途径的靶点。这些使用计算方法的基于预测的研究可能被证明是朝着开发抗结核病药物迈出的成功一步。
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