Characterization of the inducible nitric oxide synthase oxygenase domain identifies a 49 amino acid segment required for subunit dimerization and tetrahydrobiopterin interaction

被引:152
作者
Ghosh, DK
Wu, CQ
Pitters, E
Moloney, M
Werner, ER
Mayer, B
Stuehr, DJ
机构
[1] CLEVELAND CLIN FDN, DEPT IMMUNOL, CLEVELAND, OH 44195 USA
[2] GRAZ UNIV, INST PHARMAKOL & TOXIKOL, A-8010 GRAZ, AUSTRIA
[3] UNIV INNSBRUCK, INST MED CHEM & BIOCHEM, A-6020 INNSBRUCK, AUSTRIA
关键词
D O I
10.1021/bi9702290
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
The oxygenase domain of inducible NO synthase (residues 1-498, iNOSox) is the enzyme's catalytic center. Its active form is a homodimer that contains heme and tetrahydrobiopterin (H4biopterin) and binds L-arginine [Ghosh, D. K., & Stuehr, D. J. (1995) Biochemistry 34, 801], To help identify protein residues involved in prosthetic group and dimeric interaction, we expressed H4biopterin-free iNOSox in Escherichia coli. The iNOSox was 80% dimeric but contained a low-spin heme iron that bound DTT as a sixth ligand. The iNOSox bound H4biopterin or L-arginine with high affinity, which displaced DTT from the heme and caused spectral changes consistent with a closing up of the heme pocket, The H4biopterin-replete iNOSox could catalyze conversion of N-omega-hydroxyarginine to citrulline and NO in a H2O2-supported reaction. Limited trypsinolysis of the H4biopterin-free iNOSox dimer cut the protein at a single site in its N-terminal region (K117). H4biopterin protected against the cleavage whereas L-arginine did not. The resulting 40 kDa protein contained thiol-ligated low-spin heme, was monomeric, catalytically inactive, showed no capacity to bind H4biopterin or L-arginine, and did not dimerize when provided with these molecules, indicating that residues 1-117 were important for iNOSox dimerization and H4biopterin/L-arginine interaction. A deletion mutant missing residues 1-114 was partially dimeric but otherwise identical to the 40 kDa protein regarding its spectral and catalytic properties and inability to respond to L-arginine and H4biopterin, whereas a deletion mutant missing residues 1-65 was equivalent to wildtype iNOSox, narrowing the region of importance to amino acids 66-114. Mutation of a conserved cysteine in this region (C109A) decreased H4biopterin affinity without compromising iNOSox dimeric structure, L-arginine binding, or catalytic function. These results suggest that residues 66-114 of iNOSox are involved in productive H4biopterin interaction and subunit dimerization. H4biopterin binding appears to stabilize the protein structure in this region, and through doing so activates iNOS for NO synthesis.
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页码:10609 / 10619
页数:11
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共 56 条
[11]   CALMODULIN IS A SUBUNIT OF NITRIC-OXIDE SYNTHASE FROM MACROPHAGES [J].
CHO, HJ ;
XIE, QW ;
CALAYCAY, J ;
MUMFORD, RA ;
SWIDEREK, KM ;
LEE, TD ;
NATHAN, C .
JOURNAL OF EXPERIMENTAL MEDICINE, 1992, 176 (02) :599-604
[12]   INDUCIBLE NITRIC-OXIDE SYNTHASE - IDENTIFICATION OF AMINO-ACID-RESIDUES ESSENTIAL FOR DIMERIZATION AND BINDING OF TETRAHYDROBIOPTERIN [J].
CHO, HJ ;
MARTIN, E ;
XIE, QW ;
SASSA, S ;
NATHAN, C .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1995, 92 (25) :11514-11518
[13]   Expression of human inducible nitric oxide synthase in Escherichia coli [J].
Fossetta, JD ;
Niu, XD ;
Lunn, CA ;
Zavodny, PJ ;
Narula, SK ;
Lundell, D .
FEBS LETTERS, 1996, 379 (02) :135-138
[14]   MOLECULAR-CLONING AND EXPRESSION OF INDUCIBLE NITRIC-OXIDE SYNTHASE FROM HUMAN HEPATOCYTES [J].
GELLER, DA ;
LOWENSTEIN, CJ ;
SHAPIRO, RA ;
NUSSLER, AK ;
DISILVIO, M ;
WANG, SC ;
NAKAYAMA, DK ;
SIMMONS, RL ;
SNYDER, SH ;
BILLIAR, TR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (08) :3491-3495
[15]   NEURONAL NITRIC-OXIDE SYNTHASE - EXPRESSION IN ESCHERICHIA-COLI, IRREVERSIBLE INHIBITION BY PHENYLDIAZENE, AND ACTIVE-SITE TOPOLOGY [J].
GERBER, NC ;
DEMONTELLANO, PRO .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (30) :17791-17796
[16]   Domains of macrophage NO synthase have divergent roles in forming and stabilizing the active dimeric enzyme [J].
Ghosh, DK ;
AbuSoud, HM ;
Stuehr, DJ .
BIOCHEMISTRY, 1996, 35 (05) :1444-1449
[17]   MACROPHAGE NO SYNTHASE - CHARACTERIZATION OF ISOLATED OXYGENASE AND REDUCTASE DOMAINS REVEALS A HEAD-TO-HEAD SUBUNIT INTERACTION [J].
GHOSH, DK ;
STUEHR, DJ .
BIOCHEMISTRY, 1995, 34 (03) :801-807
[18]   RECONSTITUTION OF THE 2ND STEP IN NO SYNTHESIS USING THE ISOLATED OXYGENASE AND REDUCTASE DOMAINS OF MACROPHAGE NO SYNTHASE [J].
GHOSH, DK ;
ABUSOUD, HM ;
STUEHR, DJ .
BIOCHEMISTRY, 1995, 34 (36) :11316-11320
[19]   PROTEOLYTIC DISSECTION AS A PROBE OF CONFORMATIONAL-CHANGES IN THE HUMAN-ERYTHROCYTE GLUCOSE-TRANSPORT PROTEIN [J].
GIBBS, AF ;
CHAPMAN, D ;
BALDWIN, SA .
BIOCHEMICAL JOURNAL, 1988, 256 (02) :421-427
[20]   NITRIC OXIDES SYNTHASES - PROPERTIES AND CATALYTIC MECHANISM [J].
GRIFFITH, OW ;
STUEHR, DJ .
ANNUAL REVIEW OF PHYSIOLOGY, 1995, 57 :707-736