LONG-RANGE STRUCTURAL EFFECTS IN A 2ND-SITE REVERTANT OF A MUTANT DIHYDROFOLATE-REDUCTASE

被引:32
作者
BROWN, KA
HOWELL, EE
KRAUT, J
机构
[1] UNIV CALIF SAN DIEGO,DEPT CHEM,LA JOLLA,CA 92093
[2] UNIV TENNESSEE,DEPT BIOCHEM,KNOXVILLE,TN 37996
关键词
CRYSTAL STRUCTURE; MUTAGENESIS; PROTEIN CONFORMATION; ENZYMOLOGY; OXIDOREDUCTASE;
D O I
10.1073/pnas.90.24.11753
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
X-ray crystal structures have been determined for a second-site revertant (Asp-27 --> Ser, Phe-137 --> Ser; D27S/F137S) and both component single-site mutants of Escherichia coli dihydrofolate reductase. The primary D27S mutation, located in the substrate binding pocket, greatly reduces catalytic activity as compared to the wild-type enzyme. The additional F137S mutation, which partially restores catalytic activity, is located on the surface of the molecule, well outside of the catalytic center and almost-equal-to 15 angstrom from residue 27. Comparison of kinetic data for the single-site F137S mutant, specifically constructed as a control, and for the double-mutant enzymes indicates that the effects of the F137S and D27S mutations on catalysis are nonadditive. This result suggests that the second-site mutation might mediate its effects through a structural perturbation propagated along the polypeptide backbone. To investigate the mechanism by which the F137S substitution elevates the catalytic activity of D27S we have determined the structure of the D27S/F137S double mutant. We also present a rerefined structure for the original D27S mutant and a preliminary structural interpretation for the F137S single-site mutant. We find that while either single mutant shows little more than a simple side-chain substitution, the double mutant undergoes an extended structural perturbation, which is propagated between these two widely separated sites via the helix alphaB.
引用
收藏
页码:11753 / 11756
页数:4
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