Chopra Shaileja, Dooling Russell M, Horner Caroline Glyn, Howell Elizabeth E
Department of Biochemistry, Cellular, and Molecular Biology, University of Tennessee, Knoxville, Tennessee 37996-0840, USA.
J Biol Chem. 2008 Feb 22;283(8):4690-8. doi: 10.1074/jbc.M709443200. Epub 2007 Dec 17.
R67 dihydrofolate reductase (DHFR) catalyzes the reduction of dihydrofolate (DHF) to tetrahydrofolate using NADPH as a cofactor. This enzyme is a homotetramer possessing 222 symmetry, and a single active site pore traverses the length of the protein. A promiscuous binding surface can accommodate either DHF or NADPH, thus two nonproductive complexes can form (2NADPH or 2DHF) as well as a productive complex (NADPH.DHF). The role of water in binding was monitored using a number of different osmolytes. From isothermal titration calorimetry (ITC) studies, binding of NADPH is accompanied by the net release of 38 water molecules. In contrast, from both steady state kinetics and ITC studies, binding of DHF is accompanied by the net uptake of water. Although different osmolytes have similar effects on NADPH binding, variable results are observed when DHF binding is probed. Sensitivity to water activity can also be probed by an in vivo selection using the antibacterial drug, trimethoprim, where the water content of the media is decreased by increasing concentrations of sorbitol. The ability of wild type and mutant clones of R67 DHFR to allow host Escherichia coli to grow in the presence of trimethoprim plus added sorbitol parallels the catalytic efficiency of the DHFR clones, indicating water content strongly correlates with the in vivo function of R67 DHFR.
R67二氢叶酸还原酶(DHFR)以NADPH作为辅因子催化二氢叶酸(DHF)还原为四氢叶酸。这种酶是具有222对称性的同四聚体,单个活性位点孔贯穿蛋白质的长度。一个混杂的结合表面可以容纳DHF或NADPH,因此可以形成两种非生产性复合物(2NADPH或2DHF)以及一种生产性复合物(NADPH·DHF)。使用多种不同的渗透剂监测水在结合中的作用。从等温滴定量热法(ITC)研究中可知,NADPH的结合伴随着38个水分子的净释放。相比之下,从稳态动力学和ITC研究中可知,DHF的结合伴随着水的净摄取。尽管不同的渗透剂对NADPH结合有相似的影响,但在探测DHF结合时会观察到不同的结果。对水活性的敏感性也可以通过使用抗菌药物甲氧苄啶进行体内筛选来探测,在这种筛选中,通过增加山梨醇的浓度来降低培养基的含水量。R67 DHFR的野生型和突变体克隆使宿主大肠杆菌在甲氧苄啶加添加山梨醇存在的情况下生长的能力与DHFR克隆的催化效率平行,这表明含水量与R67 DHFR的体内功能密切相关。