Department of Biochemistry, University of Allahabad, Allahabad, India.
Biochemistry Division, CSIR-Central Drug Research Institute, Lucknow, India.
J Biomol Struct Dyn. 2024 Feb-Mar;42(3):1533-1543. doi: 10.1080/07391102.2023.2201849. Epub 2023 Apr 20.
Human Lymphatic filariasis is caused by parasitic nematodes and Protein disulfide isomerase (PDI), a redox-active enzyme, helps to form and isomerize the disulfide bonds, thereby acting as a chaperone. Such activity is essential for activating many essential enzymes and functional proteins. protein disulfide isomerase (BmPDI) is crucial for parasite survival and an important drug target. Here, we used a combination of spectroscopic and computational analysis to study the structural and functional changes in the BmPDI during unfolding. Tryptophan fluorescence data revealed two well-separated transitions during the unfolding process, suggesting that the unfolding of the BmPDI is non-cooperative. The binding of the fluorescence probe 8-anilino-1-naphthalene sulfonic acid dye (ANS) validated the results obtained by the pH unfolding. The dynamics of molecular simulation performed at different pH conditions revealed the structural basis of BmPDI unfolding. Detailed analysis suggested that under different pH, both the global structure and the conformational dynamics of the active site residues were differentially altered. Our multiparametric study reveals the differential dynamics and collective motions of BmPDI unfolding, providing insights into its structure-function relationship.Communicated by Ramaswamy H. Sarma.
人淋巴丝虫病是由寄生线虫引起的,而蛋白二硫键异构酶(PDI)是一种氧化还原活性酶,有助于形成和异构化二硫键,从而充当伴侣。这种活性对于激活许多必需酶和功能蛋白至关重要。蛋白二硫键异构酶(BmPDI)对于寄生虫的生存至关重要,是一个重要的药物靶点。在这里,我们使用光谱和计算分析相结合的方法来研究 BmPDI 在展开过程中的结构和功能变化。色氨酸荧光数据显示在展开过程中有两个很好分离的转变,表明 BmPDI 的展开是非协同的。荧光探针 8-苯胺-1-萘磺酸染料(ANS)的结合验证了 pH 展开得到的结果。在不同 pH 条件下进行的分子模拟动力学揭示了 BmPDI 展开的结构基础。详细分析表明,在不同的 pH 下,活性位点残基的整体结构和构象动力学都发生了不同的改变。我们的多参数研究揭示了 BmPDI 展开的差异动力学和集体运动,为其结构-功能关系提供了深入的了解。由 Ramaswamy H. Sarma 传达。