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Protein engineering of class-A non-specific acid phosphatase (PhoN) of Salmonella typhimurium: Modulation of the pH-activity profile.

机译:鼠伤寒沙门氏菌的A类非特异性酸性磷酸酶(PhoN)的蛋白质工程:调节pH活性曲线。

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Engineering of the PhoN enzyme of Salmonella typhimurium due to its superior characteristics for bioremediation of heavy metals has been advocated by Macaskie and colleagues [Basnakova, G., Stephens, E.R., Thaller, M.C., Rossolini, G.M., Macaskie, L.E., 1998. The use of Escherichia coli bearing a phoN gene for the removal of uranium and nickel from aqueous flows. Appl. Microbiol. Biotechnol. 50, 266-272]. The native enzyme hydrolyzes disparate organophosphates and exhibits optimal phosphatase activity at pH 5.5, for instance, with substrate p-nitrophenyl phosphate. Structurally guided Ile-78 was mutated using site-directed mutagenesis to Ala, Asp and His residues, with an aim to shift the optimum pH of the PhoN enzyme. Encouragingly, the I78A mutant displays significantly higher (as high as 160%) enzymatic efficiency over a broad pH range of 3.0-9.0, compared to the wild-type PhoN. The higher catalytic efficiency is due to the increase in k(cat), and can be mainly attributed to a deshielding of catalytic His-158 from the bulk-solvent. The I78D mutant possesses nearly twice the specific activity at the optimum pH of 7.0. The alkaline shift of the pH-activity profile agrees well with reasoning based on electrostatics. An increase in K(m), however, lowers the catalytic efficiency of the I78D mutant at the optimum pH. The I78H mutant, counter-intuitively, also exhibits an alkaline shift in the pH-optimum. Nonetheless, the active site scaffold in I78H mutant may not be disturbed, as similar steady-state kinetic parameters are observed for both I78H mutant and wild-type PhoN at their respective pH optima.
机译:Macaskie和同事[Basnakova,G.,Stephens,ER,Thaller,MC,Rossolini,GM,Macaskie,LE,1998。带有phoN基因的大肠杆菌用于从水流中去除铀和镍的用途。应用微生物。生物技术。 50,266-272]。天然酶水解不同的有机磷酸酯,并在pH 5.5下表现出最佳的磷酸酶活性,例如与底物对硝基苯基磷酸酯一起。结构诱变的Ile-78使用定点诱变突变为Ala,Asp和His残基,目的是转移PhoN酶的最佳pH。令人鼓舞的是,与野生型PhoN相比,I78A突变体在3.0-9.0的宽pH范围内均显示出更高的酶促效率(高达160%)。较高的催化效率归因于k(cat)的增加,并且主要可以归因于催化His-158从本体溶剂中的脱保护。 I78D突变体在7.0的最佳pH值下具有近两倍的比活性。 pH活性曲线的碱性变化与基于静电的推理非常吻合。然而,K(m)的增加降低了最佳pH下I78D突变体的催化效率。与直觉相反,I78H突变体在最适pH下也显示出碱性变化。尽管如此,在I78H突变体中的活性位点支架可能不会受到干扰,因为在各自的最佳pH下,I78H突变体和野生型PhoN均观察到了相似的稳态动力学参数。

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