Crystal structure of Tritrichomonas foetus inosine-5'-monophosphate dehydrogenase and the enzyme-product complex

被引:63
作者
Whitby, FG
Luecke, H
Kuhn, P
Somoza, JR
HuetePerez, JA
Phillips, JD
Hill, CP
Fletterick, RJ
Wang, CC
机构
[1] STANFORD SYNCHROTRON RADIAT LAB, STANFORD, CA 94309 USA
[2] UNIV CALIF SAN FRANCISCO, DEPT BIOCHEM & BIOPHYS, SAN FRANCISCO, CA 94143 USA
[3] UNIV UTAH, SCH MED, DEPT MED, SALT LAKE CITY, UT 84132 USA
[4] UNIV UTAH, SCH MED, DEPT BIOCHEM, SALT LAKE CITY, UT 84132 USA
关键词
D O I
10.1021/bi9708850
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Inosine-5'-monophosphate dehydrogenase (IMPDH) is an attractive drug target for the control of parasitic infections. The enzyme catalyzes the oxidation of inosine monophosphate (IMP) to xanthosine monophosphate (XMP), the committed step in de novo: guanosine monophosphate (GMP) biosynthesis. We have determined the crystal structures of IMPDH from the protozoan parasite Tritrichomonas foetus in the apo form al 2.3 Angstrom resolution and the enzyme-XMP complex at 2.6 Angstrom resolution. Each monomer of this tetrameric enzyme is comprised of two domains, the largest of which includes an eight-stranded parallel beta/alpha-barrel that; contains the: enzyme active site at the C termini of the barrel beta-strands. A second domain, comprised of residues 102-220, is disordered in the crystal. IMPDH is expected to be active as a tetramer, since the active site cavity is formed by strands from adjacent subunits. An intrasubunit disulfide bond, seen in the crystal structure, may stabilize the protein in a less active form, as high concentrations of reducing agent: have been shown to increase enzyme activity, Disorder at the active site suggests that a high degree of flexibility may be inherent in the catalytic function of IMPDH. Unlike IMPDH from other species, the T. foetus enzyme has a single arginine that is largely responsible for coordinating the substrate phosphate in the active site, This structural uniqueness may facilitate structure-based identification and design of compounds that specifically inhibit the parasite enzyme.
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页码:10666 / 10674
页数:9
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