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Comprehensive analysis of the catalytic and structural properties of a mu-class glutathione s-transferase from Fasciola gigantica

机译:综合分析的巨型Fasciola gantica的mu类谷胱甘肽S转移酶的催化和结构性质

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摘要

Glutathione S‒transferases (GSTs) play an important role in the detoxification of xenobiotics. They catalyze the nucleophilic addition of glutathione (GSH) to nonpolar compounds, rendering the products water-soluble. In the present study, we investigated the catalytic and structural properties of a mu-class GST from Fasciola gigantica (FgGST1). The purified recombinant FgGST1 formed a homodimer composed of 25 kDa subunit. Kinetic analysis revealed that FgGST1 displays broad substrate specificity and shows high GSH conjugation activity toward 1-chloro-2,4-dinitrobenzene, 4-nitroquinoline-1-oxide, and trans-4-phenyl-3-butene-2-one and peroxidase activity towards trans-2-nonenal and hexa-2,4-dienal. The FgGST1 was highly sensitive to inhibition by cibacron blue. The cofactor (GSH) and inhibitor (cibacron blue) were docked, and binding sites were identified. The molecular dynamics studies and principal component analysis indicated the stability of the systems and the collective motions, respectively. Unfolding studies suggest that FgGST1 is a highly cooperative molecule because, during GdnHCl-induced denaturation, a simultaneous unfolding of the protein without stabilization of any partially folded intermediate is observed. The protein is stabilized with a conformational free energy of about 10 ± 0.3 kcal mol−1. Additionally, the presence of conserved Pro-53 and structural motifs such as N-capping box and hydrophobic staple, further aided in the stability and proper folding of FgGST1.
机译:谷胱甘肽S‒转移酶(GST)在异生物素的解毒中起重要作用。它们催化谷胱甘肽(GSH)向非极性化合物的亲核加成,使产物呈水溶性。在当前的研究中,我们调查了Fasciola gigantica(FgGST1)的mu类GST的催化和结构性质。纯化的重组FgGST1形成由25 kDa亚基组成的同源二聚体。动力学分析表明,FgGST1具有广泛的底物特异性,并且对1-氯-2,4-二硝基苯,4-硝基喹啉-1-氧化物和反式-4-苯基-3-丁烯-2-酮和过氧化物酶具有高GSH偶联活性对反式-2-壬烯醛和己二醛,二戊烯醛有活性。 FgGST1对烟碱蓝的抑制高度敏感。对接辅因子(GSH)和抑制剂(西巴龙蓝),并鉴定了结合位点。分子动力学研究和主成分分析分别表明了系统的稳定性和集体运动。展开研究表明FgGST1是高度协作的分子,因为在GdnHCl诱导的变性过程中,观察到蛋白质同时展开而未稳定任何部分折叠的中间体。蛋白质以约10±0.3 kcal mol -1 的构象自由能稳定。此外,保守的Pro-53和结构基序(例如N帽盒和疏水性钉书针)的存在进一步有助于FgGST1的稳定性和正确折叠。

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