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首页> 外文期刊>Biochemistry >Residue 219 impacts on the dynamics of the C-terminal region in glutathione transferase A1-1: implications for stability and catalytic and ligandin functions.
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Residue 219 impacts on the dynamics of the C-terminal region in glutathione transferase A1-1: implications for stability and catalytic and ligandin functions.

机译:残基219影响谷胱甘肽转移酶A1-1中C末端区域的动力学:对稳定性以及催化和配体蛋白功能的影响。

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摘要

The C-terminal region in class alpha glutathione transferases (GSTs) modulates the catalytic and nonsubstrate ligand binding functions of these enzymes. Except for mouse GST A1-1 (mGST A1-1), the structures of class alpha GSTs have a bulky aliphatic side chain topologically equivalent to Ile219 in human GST A1-1 (hGST A1-1). In mGST A1-1, the corresponding residue is an alanine. To investigate the role of Ile219 in determining the conformational dynamics of the C-terminal region in hGST A1-1, the residue was replaced by alanine. The substitution had no effect on the global structure of hGST A1-1 but did reduce the conformational stability of the C-terminal region of the protein. This region could be stabilized by ligands bound at the active site. The catalytic behavior of hGST A1-1 was significantly compromised by the I219A mutation as demonstrated by reduced enzyme activity, increased K(m) for the substrates glutathione (GSH) and 1-chloro-2,4-dinitrobenzene (CDNB), and reduced catalytic efficiencies. Inhibition studies also indicated that the binding affinities for product and substrate analogues were dramatically decreased. The affinity of the mutant for GSH was, however, only slightly increased, indicating that the G-site was unaltered by the mutation. The binding affinity and stoichiometry for the anionic dye 8-anilino-1-naphthalene sulfonate (ANS) was also not significantly affected by the I219A mutation. However, the lower DeltaC(p)() for ANS binding to the mutant (-0.34 kJ/mol per K compared with -0.84 kJ/mol per K for the wild-type protein) suggests that ANS binding to the mutant results in the burial of less hydrophobic surface area. Fluorescence data also indicates that ANS bound to the mutant is more prone to quenching by water. Overall, the data from this study, together with the structural details of the C-terminal region in mGST A1-1, show that Ile219 is an important structural determinant of the stability and dynamics of the C-terminal region of hGST A1-1.
机译:α类谷胱甘肽转移酶(GST)中的C端区域可调节这些酶的催化和非底物配体结合功能。除小鼠GST A1-1(mGST A1-1)以外,αGST类的结构具有拓扑结构上与人GST A1-1(hGST A1-1)中的Ile219相当的脂肪族侧链。在mGST A1-1中,相应的残基是丙氨酸。为了研究Ile219在确定hGST A1-1中C端区域构象动力学中的作用,将残基替换为丙氨酸。取代对hGST A1-1的整体结构没有影响,但确实降低了蛋白质C端区域的构象稳定性。该区域可由结合在活性位点的配体稳定。酶活性降低,底物谷胱甘肽(GSH)和1-氯-2,4-二硝基苯(CDNB)的K(m)升高证明,I219A突变大大削弱了hGST A1-1的催化行为。催化效率。抑制研究还表明,产物和底物类似物的结合亲和力大大降低。但是,突变体对GSH的亲和力仅略有增加,表明G位点并未因突变而改变。阴离子染料8-苯胺基-1-萘磺酸盐(ANS)的结合亲和力和化学计量也不受I219A突变的影响。但是,ANS与突变体结合的DeltaC(p)()较低(野生型蛋白为-0.34 kJ / mol / K,而野生型蛋白为-0.84 kJ / mol / K),这表明ANS与突变体的结合较小的疏水表面积的埋葬。荧光数据还表明与突变体结合的ANS更易于被水淬灭。总体而言,这项研究的数据以及mGST A1-1中C末端区域的结构细节表明,Ile219是hGST A1-1 C末端区域稳定性和动力学的重要结构决定因素。

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