[Cloning, expression and characterization of the hypoxanthine-guanine phosphoribosyltransferase mutants from T. tengcongensis].

De-Lin You, Hong Qu, Qiang Chen, Yang Xing, Xiao-Cheng Gu, Ming Luo
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Abstract

Based on a predicted three-dimensional structure of hypoxanthine-guanine phosphoribosyltransferase (HGPRT) from Thermoanaerobacter tengcongensis, three mutants of HGPRT were designed to modify the purine specificity of HGPRT. Site-directed mutagenesis was used to generate the three mutants, K(133)A, K(133)S, K(133)T. Wild type HGPRT and its mutants were expressed E. coli in BL21 (DE3) pLysS, and the expression products of them reached about 30% of the total protein. The molecular weight of the recombinant proteins was 22 kD. The specific activities of the enzymes were determined. Catalytic activities of mutants K(133)A, K(133)S, K(133)T retained only 4%, 1.1%, 2.7% activities, respectively, of the wild type for hypoxanthine, 1.7% 0.6% 1% activities, respectively, of wild type for guanine. However, the three mutants showed 24-fold, 7-fold, 18-fold activities, respectively, of the wild type for xanthine, and 650-fold, 210-fold, 380-fold activities, respectively, of the wild type for adenine. Comparison of kinetic data for purified recombinant mutant with wild-type HGPRT showed significant difference in the catalytic efficiency (kcat/Km) for purine, xanthine and adenine, the mutants exhibiting more than 40 to 50-fold higher kcat/Km, as a result of nearly 4 to 5-fold decrease in Km, compared with wild-type. These results demonstrate that a single amino acid substitution in HGPRT at the active site can significantly modify the specificity for binding purine.

[腾家蚕次黄嘌呤-鸟嘌呤磷酸核糖基转移酶突变体的克隆、表达和特性研究]。
基于预测的热厌氧菌腾根菌的次黄嘌呤-鸟嘌呤磷酸核糖基转移酶(HGPRT)的三维结构,设计了三个HGPRT突变体来修饰HGPRT的嘌呤特异性。利用定点诱变技术获得了K(133)A、K(133)S、K(133)T三个突变体。野生型HGPRT及其突变体在大肠杆菌BL21 (DE3) pLysS中表达,其表达产物约占总蛋白的30%。重组蛋白分子量为22 kD。测定了酶的比活性。突变体K(133)A、K(133)S、K(133)T对次黄嘌呤的催化活性分别为野生型的4%、1.1%、2.7%,对鸟嘌呤的催化活性分别为野生型的1.7%、0.6%、1%。3个突变体对黄嘌呤的活性分别为野生型的24倍、7倍、18倍,对腺嘌呤的活性分别为野生型的650倍、210倍、380倍。将纯化重组突变体与野生型HGPRT的动力学数据进行比较,发现纯化重组突变体对嘌呤、黄嘌呤和腺嘌呤的催化效率(kcat/Km)有显著差异,kcat/Km比野生型高40 ~ 50倍,Km比野生型低近4 ~ 5倍。这些结果表明,HGPRT活性位点的单个氨基酸替换可以显著改变其结合嘌呤的特异性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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