The tricarballylate utilization (tcuRABC) genes of Salmonella enterica serovar typhimurium LT2

被引:33
作者
Lewis, JA [1 ]
Horswill, AR [1 ]
Schwem, BE [1 ]
Escalante-Semerena, JC [1 ]
机构
[1] Univ Wisconsin, Dept Bacteriol, Enzyme Inst 264, Madison, WI 53726 USA
关键词
D O I
10.1128/JB.186.6.1629-1637.2004
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The genes of Salmonella enterica serovar Typhimurium LT2 encoding functions needed for the utilization of tricarballylate as a carbon and energy source were identified and their locations in the chromosome were established. Three of the tricarballylate utilization (tcu) genes, tcuABC, are organized as an operon; a fourth gene, tcuR, is located immediately 5' to the tcuABC operon. The tcuABC operon and tcuR gene share the same direction of transcription but are independently transcribed. The tcuRABC genes are missing in the Escherichia coli K-12 chromosome. The tcuR gene is proposed to encode a regulatory protein needed for the expression of tcuABC. The tcuC gene is proposed to encode an integral membrane protein whose role is to transport tricarballylate across the cell membrane. tcuC function was sufficient to allow E. coli K-12 to grow on citrate (a tricarballylate analog) but not to allow growth of this bacterium on tricarballylate. E. coli K-12 carrying a plasmid with wild-type alleles of tcuABC grew on tricarballylate, suggesting that the functions of the TcuABC proteins were the only ones unique to S. enterica needed to catabolize tricarballylate. Analyses of the predicted amino acid sequences of the TcuAB proteins suggest that TcuA is a flavoprotein, and TcuB is likely anchored to the cell membrane and probably contains one or more Fe-S centers. The TcuB protein is proposed to work in concert with TcuA to oxidize tricarballylate to cis-aconitate, which is further catabolized via the Krebs cycle. The glyoxylate shunt is not required for growth of S. enterica on tricarballylate. A model for tricarballylate catabolism in S. enterica is proposed.
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页码:1629 / 1637
页数:9
相关论文
共 40 条
[1]   CITRATE TRANSPORT IN SALMONELLA-TYPHIMURIUM - STUDIES WITH 2-FLUORO-L-ERYTHRO-CITRATE AS A SUBSTRATE [J].
ASHTON, DM ;
SWEET, GD ;
SOMERS, JM ;
KAY, WW .
CANADIAN JOURNAL OF BIOCHEMISTRY, 1980, 58 (10) :797-803
[2]   NEW APPROACH TO CULTIVATION OF METHANOGENIC BACTERIA - 2-MERCAPTOETHANESULFONIC ACID (HS-COM)-DEPENDENT GROWTH OF METHANOBACTERIUM-RUMINANTIUM IN A PRESSURIZED ATMOSPHERE [J].
BALCH, WE ;
WOLFE, RS .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1976, 32 (06) :781-791
[3]   PROCEDURE FOR IDENTIFYING NONSENSE MUTATIONS [J].
BERKOWIT.D ;
HUSHON, JM ;
WHITFIEL.HJ ;
ROTH, J ;
AMES, BN .
JOURNAL OF BACTERIOLOGY, 1968, 96 (01) :215-&
[4]   The complete genome sequence of Escherichia coli K-12 [J].
Blattner, FR ;
Plunkett, G ;
Bloch, CA ;
Perna, NT ;
Burland, V ;
Riley, M ;
ColladoVides, J ;
Glasner, JD ;
Rode, CK ;
Mayhew, GF ;
Gregor, J ;
Davis, NW ;
Kirkpatrick, HA ;
Goeden, MA ;
Rose, DJ ;
Mau, B ;
Shao, Y .
SCIENCE, 1997, 277 (5331) :1453-+
[5]  
BLAUT M, 1989, J BIOL CHEM, V264, P13599
[6]   TRANS-ACONITIC ACID IN RANGE GRASSES IN EARLY SPRING [J].
BURAU, R ;
STOUT, PR .
SCIENCE, 1965, 150 (3697) :766-&
[7]  
CAETANOANOLLES G, 1993, PCR METH APPL, V3, P85
[8]   PLASMID INSERTION MUTAGENESIS AND LAC GENE FUSION WITH MINI-MU BACTERIOPHAGE TRANSPOSONS [J].
CASTILHO, BA ;
OLFSON, P ;
CASADABAN, MJ .
JOURNAL OF BACTERIOLOGY, 1984, 158 (02) :488-495
[9]   SPECIALIZED TRANSDUCTION OF TETRACYCLINE RESISTANCE BY PHAGE-P22 IN SALMONELLA-TYPHIMURIUM .2. PROPERTIES OF A HIGH-FREQUENCY TRANSDUCING LYSATE [J].
CHAN, RK ;
BOTSTEIN, D ;
WATANABE, T ;
OGATA, Y .
VIROLOGY, 1972, 50 (03) :883-898
[10]   ABILITY OF ACIDAMINOCOCCUS-FERMENTANS TO OXIDIZE TRANS-ACONITATE AND DECREASE THE ACCUMULATION OF TRICARBALLYLATE, A TOXIC END-PRODUCT OF RUMINAL FERMENTATION [J].
COOK, GM ;
WELLS, JE ;
RUSSELL, JB .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1994, 60 (07) :2533-2537