CRYSTAL-STRUCTURE OF A QUINOENZYME - COPPER AMINE OXIDASE OF ESCHERICHIA-COLI AT 2-ANGSTROM RESOLUTION

被引:304
作者
PARSONS, MR [1 ]
CONVERY, MA [1 ]
WILMOT, CM [1 ]
YADAV, KDS [1 ]
BLAKELY, V [1 ]
CORNER, AS [1 ]
PHILLIPS, SEV [1 ]
MCPHERSON, MJ [1 ]
KNOWLES, PF [1 ]
机构
[1] UNIV LEEDS, DEPT BIOCHEM & MOLEC BIOL, LEEDS LS2 9JT, W YORKSHIRE, ENGLAND
基金
英国工程与自然科学研究理事会;
关键词
AMINO ACID DERIVED COFACTOR; COPPER AMINE OXIDASE; QUINOENZYME; 2,4,5-TRIHYDROXYPHENYLALANINE QUINONE;
D O I
10.1016/S0969-2126(01)00253-2
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
Background: Copper amine oxidases are a ubiquitous and novel group of quinoenzymes that catalyze the oxidative deamination of primary amines to the corresponding aldehydes, with concomitant reduction of molecular oxygen to hydrogen peroxide. The enzymes are dimers of identical 70-90 kDa subunits, each of which contains a single copper ion and a covalently bound cofactor formed by the post-translational modification of a tyrosine side chain to 2,4,5-trihydroxyphenylalanine quinone (TPQ). Results: The crystal structure of amine oxidase from Escherichia coli has been determined in both an active and an inactive form. The only structural differences are in the active site, where differences in copper coordination geometry and in the position and interactions of the redox cofactor, TPQ, are observed. Each subunit of the mushroom-shaped dimer comprises four domains: a 440 amino acid C-terminal beta sandwich domain, which contains the active site and provides the dimer interface, and three smaller peripheral alpha/beta domains (D1-D3), each of about 100 amino acids. D2 and D3 show remarkable structural and sequence similarity to each other and are conserved throughout the quinoenzyme family. In contrast, D1 is absent from some amine oxidases. The active sites are well buried from solvent and lie some 35 Angstrom apart, connected by a pair of beta hairpin arms. Conclusions: The crystal structure of E. coli copper amine oxidase reveals a number of unexpected features and provides a basis for investigating the intriguing similarities and differences in catalytic mechanism of members of this enzyme family. In addition to the three conserved histidines that bind the copper, our studies identify a number of other conserved residues close to the active site, including a candidate for the catalytic base and a fourth conserved histidine which is involved in an interesting intersubunit interaction.
引用
收藏
页码:1171 / 1184
页数:14
相关论文
共 51 条
[1]   PROPERTIES OF COBALT-SUBSTITUTED BOVINE SERUM AMINE OXIDASE [J].
AGOSTINELLI, E ;
MORPURGO, L ;
WANG, CQ ;
GIARTOSIO, A ;
MONDOVI, B .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1994, 222 (03) :727-732
[2]  
AMARAL D, 1963, J BIOL CHEM, V238, P2281
[3]   NUCLEOTIDE-SEQUENCE OF THE GENE FOR MONOAMINE-OXIDASE (MAOA) FROM ESCHERICHIA-COLI [J].
AZAKAMI, H ;
YAMASHITA, M ;
ROH, JH ;
SUZUKI, H ;
KUMAGAI, H ;
MUROOKA, Y .
JOURNAL OF FERMENTATION AND BIOENGINEERING, 1994, 77 (03) :315-319
[4]   THE CCP4 SUITE - PROGRAMS FOR PROTEIN CRYSTALLOGRAPHY [J].
BAILEY, S .
ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 1994, 50 :760-763
[5]   ELECTRON NUCLEAR DOUBLE-RESONANCE (ENDOR) SPECTROSCOPY OF AMINE OXIDASE FROM PIG PLASMA [J].
BAKER, GJ ;
KNOWLES, PF ;
PANDEYA, KB ;
RAYNER, JB .
BIOCHEMICAL JOURNAL, 1986, 237 (02) :609-612
[6]   PROPERTIES OF CUPRIC IONS IN BENZYLAMINE OXIDASE FROM PIG PLASMA AS STUDIED BY MAGNETIC-RESONANCE AND KINETIC METHODS [J].
BARKER, R ;
BODEN, N ;
CAYLEY, G ;
CHARLTON, SC ;
HENSON, R ;
HOLMES, MC ;
KELLY, ID ;
KNOWLES, PF .
BIOCHEMICAL JOURNAL, 1979, 177 (01) :289-302
[7]  
BELLELLI A, 1991, J BIOL CHEM, V266, P20654
[8]   SINGLE-CRYSTAL ESR-SPECTRA OF COPPER(II) COMPLEXES WITH GEOMETRIES INTERMEDIATE BETWEEN A SQUARE PYRAMID AND A TRIGONAL BIPYRAMID [J].
BENCINI, A ;
BERTINI, I ;
GATTESCHI, D ;
SCOZZAFAVA, A .
INORGANIC CHEMISTRY, 1978, 17 (11) :3194-3197
[9]   THE FUNCTIONAL-ROLE OF MONOAMINE OXIDASE-A AND OXIDASE-B IN THE MAMMALIAN CENTRAL-NERVOUS-SYSTEM [J].
BERRY, MD ;
JUORIO, AV ;
PATERSON, IA .
PROGRESS IN NEUROBIOLOGY, 1994, 42 (03) :375-391
[10]   METHODS AND PROGRAMS FOR DIRECT-SPACE EXPLOITATION OF GEOMETRIC REDUNDANCIES [J].
BRICOGNE, G .
ACTA CRYSTALLOGRAPHICA SECTION A, 1976, 32 (SEP1) :832-847