Divya N, Grifith E, Narayana Narendra
Department of Biochemistry, Case Western Reserve University, Cleveland, Ohio 44106, USA.
Protein Sci. 2007 Jun;16(6):1063-8. doi: 10.1110/ps.062740907. Epub 2007 May 1.
Plasmid-encoded bacterial R67 dihydrofolate reductase (DHFR) is a NADPH-dependent enzyme unrelated to chromosomal DHFR in amino acid sequence and structure. R67 DHFR is insensitive to the bacterial drug trimethoprim in contrast to chromosomal DHFR. The crystal structure of Q67H mutant of R67 DHFR bound to NADP(+) has been determined at 1.15 angstroms resolution. The cofactor assumes an extended conformation with the nicotinamide ring bound near the center of the active site pore, the ribose and pyrophosphate group (PP(i)) extending toward the outer pore. The ribonicotinamide exhibits anti conformation as in chromosomal DHFR complexes. The relative orientation between the PP(i) and the nicotinamide ribose differs from that observed in chromosomal DHFR-NADP(+) complexes. The coenzyme displays symmetrical binding mode with several water-mediated hydrogen bonds with the protein besides ionic, stacking, and van der Waals interactions. The structure provides a molecular basis for the observed stoichiometry and cooperativity in ligand binding. The ternary model based on the present structure and the previous R67 DHFR-folate complex provides insight into the catalytic mechanism and indicates that the relative orientation of the reactants in plasmid DHFR is different from that seen in chromosomal DHFRs.
质粒编码的细菌R67二氢叶酸还原酶(DHFR)是一种依赖NADPH的酶,其氨基酸序列和结构与染色体DHFR无关。与染色体DHFR不同,R67 DHFR对细菌药物甲氧苄啶不敏感。已在1.15埃分辨率下测定了与NADP(+)结合的R67 DHFR的Q67H突变体的晶体结构。辅因子呈现伸展构象,烟酰胺环靠近活性位点孔的中心结合,核糖和焦磷酸基团(PP(i))向外孔延伸。核糖烟酰胺呈现与染色体DHFR复合物中一样的反式构象。PP(i)与烟酰胺核糖之间的相对取向不同于在染色体DHFR-NADP(+)复合物中观察到的情况。辅酶除了离子、堆积和范德华相互作用外,还通过几个水介导的氢键与蛋白质呈现对称结合模式。该结构为观察到的配体结合化学计量和协同性提供了分子基础。基于当前结构和先前的R67 DHFR-叶酸复合物的三元模型深入了解了催化机制,并表明质粒DHFR中反应物的相对取向与染色体DHFR中的不同。