PseudoCyc, a pathway-genome database for Pseudomonas aeruginosa

被引:30
作者
Romero, P [1 ]
Karp, P [1 ]
机构
[1] SRI Int, Bioinformat Res Grp, Menlo Pk, CA 94025 USA
关键词
PseudoCyc; pathway-genome database; Pseudomonas aeruginosa; genomic databases; metabolic pathways database; proteomic databases;
D O I
10.1159/000071075
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
A pathway-genome database (PGDB) describes the entire genome of an organism, as well as its biochemical pathways, reactions, and enzymes. Our PathoLogic software can generate a PGDB from an annotated genome of an organism, predicting the metabolic reactions and pathways corresponding to the enzymes present in the annotation. We have used PathoLogic to generate a PGDB for Pseudomonas aeruginosa, strain PAO1, called 'PseudoCyc', which includes 139 predicted pathways and 800 predicted reactions involving 623 chemical species and 718 enzymes. Analysis of the PathoLogic predictions of arginine metabolism and the beta-ketoadipate pathway, which are landmark pathways in P. aeruginosa, showed that they were for the most part correctly predicted. These studies also provided possible locations for two genes involved in the P-ketoadipate pathway, pcal and pcaJ, which are missing from the PAO1 annotation. PseudoCyc adds an extended dimension to the genome of P. aeruginosa, providing researchers with a helpful tool for the analysis of the genomic, proteomic, and metabolic information of the organism. The finding of the probable location of the pcal and pcaJ genes is but one example of the discoveries facilitated by such a PGDB. PseudoCyc, along with PGDBs for 12 other organisms, is available at http://BioCyc.org/. Copyright (C) 2003 S. Karger AG, Basel.
引用
收藏
页码:230 / 239
页数:10
相关论文
共 13 条
[1]   Gapped BLAST and PSI-BLAST: a new generation of protein database search programs [J].
Altschul, SF ;
Madden, TL ;
Schaffer, AA ;
Zhang, JH ;
Zhang, Z ;
Miller, W ;
Lipman, DJ .
NUCLEIC ACIDS RESEARCH, 1997, 25 (17) :3389-3402
[2]   Degradation of aromatics and chloroaromatics by Pseudomonas sp strain B13:: Cloning, characterization, and analysis of sequences encoding 3-oxoadipate:succinyl-coenzyme A (CoA) transferase and 3-oxoadipyl-CoA thiolase [J].
Göbel, M ;
Kassel-Cati, K ;
Schmidt, E ;
Reineke, W .
JOURNAL OF BACTERIOLOGY, 2002, 184 (01) :216-223
[3]  
HAAS D, 1990, PSEUDOMONAS : BIOTRANSFORMATIONS, PATHOGENESIS, AND EVOLVING BIOTECHNOLOGY, P303
[4]   ARGININE DEGRADATION IN PSEUDOMONAS-AERUGINOSA MUTANTS BLOCKED IN 2 ARGININE CATABOLIC PATHWAYS [J].
HAAS, D ;
MATSUMOTO, H ;
MORETTI, P ;
STALON, V ;
MERCENIER, A .
MOLECULAR & GENERAL GENETICS, 1984, 193 (03) :437-444
[5]   The EcoCyc and MetaCyc databases [J].
Karp, PD ;
Riley, M ;
Saier, M ;
Paulsen, IT ;
Paley, SM ;
Pellegrini-Toole, A .
NUCLEIC ACIDS RESEARCH, 2000, 28 (01) :56-59
[6]   Pathway databases: A case study in computational symbolic theories [J].
Karp, PD .
SCIENCE, 2001, 293 (5537) :2040-2044
[7]  
Karp Peter D, 2002, Bioinformatics, V18 Suppl 1, pS225
[8]   Molecular characterization and regulation of the aguBA operon, responsible for agmatine utilization in Pseudomonas aeruginosa PAO1 [J].
Nakada, Y ;
Jiang, Y ;
Nishijyo, T ;
Itoh, Y ;
Lu, CD .
JOURNAL OF BACTERIOLOGY, 2001, 183 (22) :6517-6524
[9]  
OUZOUNIS CA, 1994, J MOL EVOL, V39, P101
[10]   Evaluation of computational metabolic-pathway predictions for Helicobacter pylori [J].
Paley, SM ;
Karp, PD .
BIOINFORMATICS, 2002, 18 (05) :715-724