Meng M, Chane T L, Sun Y J, Hsiao C D
Graduate Institute of Agricultural Biotechnology, National Chung Hsing University, Taichung, Taiwan, Republic of China.
Protein Sci. 1999 Nov;8(11):2438-43. doi: 10.1110/ps.8.11.2438.
Phosphoglucose isomerase (EC 5.3.1.9) catalyzes the interconversion of D-glucopyranose-6-phosphate and D-fructofuranose-6-phosphate by promoting an intrahydrogen transfer between C1 and C2. A conserved histidine exists throughout all phosphoglucose isomerases and was hypothesized to be the base catalyzing the isomerization reaction. In the present study, this conserved histidine, His311, of the enzyme from Bacillus stearothermophilus was subjected to mutational analysis, and the mutational effect on the inactivation kinetics by N-bromoacetylethanolamine phosphate was investigated. The substitution of His311 with alanine, asparagine, or glutamine resulted in the decrease of activity, in k(cat)/K(M), by a factor of 10(3), indicating the importance of this residue. N-bromoacetylethanolamine phosphate inactivated irreversibly the activity of wild-type phosphoglucose isomerase; however, His311 --> Ala became resistant to this inhibitor, indicating that His311 is located in the active site and is responsible for the inactivation of the enzyme by this active site-directed inhibitor. The pKa of His311 was estimated to be 6.31 according to the pH dependence of the inactivation. The proximity of this value with the pKa value of 6.35, determined from the pH dependence of k(cat)/K(M), supports a role of His311 as a general base in the catalysis.
磷酸葡萄糖异构酶(EC 5.3.1.9)通过促进C1和C2之间的分子内氢转移,催化6-磷酸-D-吡喃葡萄糖和6-磷酸-D-呋喃果糖的相互转化。在所有磷酸葡萄糖异构酶中都存在一个保守的组氨酸,据推测它是催化异构化反应的碱基。在本研究中,对嗜热脂肪芽孢杆菌的该酶的这个保守组氨酸His311进行了突变分析,并研究了其对磷酸-N-溴乙酰乙醇胺失活动力学的突变效应。用丙氨酸、天冬酰胺或谷氨酰胺取代His311导致活性、k(cat)/K(M)下降了10^3倍,表明该残基的重要性。磷酸-N-溴乙酰乙醇胺不可逆地使野生型磷酸葡萄糖异构酶失活;然而,His311→Ala对该抑制剂产生抗性,表明His311位于活性位点,并负责该活性位点导向抑制剂对酶的失活作用。根据失活的pH依赖性,His311的pKa估计为6.31。该值与根据k(cat)/K(M)的pH依赖性确定的6.35的pKa值接近,支持His311作为催化中的一般碱基的作用。