Role of conserved Asn-Tyr-Asp-Tyr sequence in bacterial copper/2,4,5-trihydroxyphenylalanyl quinone-containing histamine oxidase

被引:22
作者
Choi, YH
Matsuzaki, R
Suzuki, S
Tanizawa, K
机构
[1] OSAKA UNIV,INST SCI & IND RES,DIV BIOL SCI,IBARAKI,OSAKA 567,JAPAN
[2] OSAKA UNIV,FAC SCI,DEPT CHEM,TOYONAKA,OSAKA 560,JAPAN
关键词
D O I
10.1074/jbc.271.37.22598
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
Copper amine oxidase contains a covalently bound quinonoid cofactor, 2,4,5-trihydroxyphenylalanyl quinone (TPQ), which is synthesized by post-translational modification of a specific tyrosyl residue occurring in the highly conserved sequence, Asn-Tyr-(Asp/Glu)-Tyr. To elucidate the role(s) of the conserved sequence in the biogenesis of TPQ, each of the corresponding residues at positions 401-404 in the recombinant histamine oxidase from Arthrobacter globiformis has been replaced with other amino acids by site-directed mutagenesis. When Asn 401 was changed to Asp or Gln, the rate of TPQ formation by copper-dependent self-processing was 10(3)- to 10(4)-fold slower than in the wild-type enzyme. When Tyr-402 was replaced by Phe, TPQ was not formed at all, showing that Tyr-402 is essential as the precursor to TPQ. In contrast, Asp-403 could be replaced by Glu without changes in the rate of TPQ formation, whereas its replacement by Asn led to a marked decrease. Furthermore, when Tyr-404 was changed to Phe, TPQ was formed swiftly on incubation with copper ions, but the TPQ enzyme exhibited very low activity with altered substrate specificity. These results collectively indicate that a very rigorous structural motif is required for efficient formation of TPQ and for the catalytic activity in the active site of copper amine oxidases.
引用
收藏
页码:22598 / 22603
页数:6
相关论文
共 22 条
[11]  
KNOWLES PF, 1994, MET IONS BIOL SYST, V30, P361
[12]   GENERATION OF THE TOPA QUINONE COFACTOR IN BACTERIAL MONOAMINE-OXIDASE BY CUPRIC ION-DEPENDENT AUTOOXIDATION OF A SPECIFIC TYROSYL RESIDUE [J].
MATSUZAKI, R ;
FUKUI, T ;
SATO, H ;
OZAKI, Y ;
TANIZAWA, K .
FEBS LETTERS, 1994, 351 (03) :360-364
[13]   SPECTROSCOPIC STUDIES ON THE MECHANISM OF THE TOPA QUINONE GENERATION IN BACTERIAL MONOAMINE OXIDASE [J].
MATSUZAKI, R ;
SUZUKI, S ;
YAMAGUCHI, K ;
FUKUI, T ;
TANIZAWA, K .
BIOCHEMISTRY, 1995, 34 (14) :4524-4530
[14]  
MCINTIRE WS, 1993, PRINCIPLES APPL QUIN, P97
[15]  
MU D, 1992, J BIOL CHEM, V267, P7979
[16]  
Nakamura N, 1996, J BIOL CHEM, V271, P4718
[17]   CRYSTAL-STRUCTURE OF A QUINOENZYME - COPPER AMINE OXIDASE OF ESCHERICHIA-COLI AT 2-ANGSTROM RESOLUTION [J].
PARSONS, MR ;
CONVERY, MA ;
WILMOT, CM ;
YADAV, KDS ;
BLAKELY, V ;
CORNER, AS ;
PHILLIPS, SEV ;
MCPHERSON, MJ ;
KNOWLES, PF .
STRUCTURE, 1995, 3 (11) :1171-1184
[18]   ENZYMATIC AMPLIFICATION OF BETA-GLOBIN GENOMIC SEQUENCES AND RESTRICTION SITE ANALYSIS FOR DIAGNOSIS OF SICKLE-CELL ANEMIA [J].
SAIKI, RK ;
SCHARF, S ;
FALOONA, F ;
MULLIS, KB ;
HORN, GT ;
ERLICH, HA ;
ARNHEIM, N .
SCIENCE, 1985, 230 (4732) :1350-1354
[19]  
SARKAR G, 1990, BIOTECHNIQUES, V8, P404
[20]   CLONING AND SEQUENCING OF PHENYLETHYLAMINE OXIDASE FROM ARTHROBACTER-GLOBIFORMIS AND IMPLICATION OF TYR-382 AS THE PRECURSOR TO ITS COVALENTLY BOUND QUINONE COFACTOR [J].
TANIZAWA, K ;
MATSUZAKI, R ;
SHIMIZU, E ;
YORIFUJI, T ;
FUKUI, T .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1994, 199 (03) :1096-1102