INVOLVEMENT OF THE ESCHERICHIA-COLI PHN (PSID) GENE-CLUSTER IN ASSIMILATION OF PHOSPHORUS IN THE FORM OF PHOSPHONATES, PHOSPHITE, PI ESTERS, AND PI

被引:121
作者
METCALF, WW [1 ]
WANNER, BL [1 ]
机构
[1] PURDUE UNIV,DEPT BIOL SCI,W LAFAYETTE,IN 47907
关键词
D O I
10.1128/jb.173.2.587-600.1991
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The phn (psiD) gene cluster is induced during P(i) limitation and is required for the use of phosphonates (Pn) as a phosphorus (P) source. Twelve independent Pn-negative (Pn-) mutants have lesions in the phn gene cluster which, as determined on the basis of recombination frequencies, is larger than 10 kbp. This distance formed the basis for determining the complete DNA sequence of a 15.6-kbp BamHI fragment, the sequences of which suggested an operon with 17 open reading frames, denoted (in alphabetical order) the phnA to phnQ genes (C.-M. Chen, Q.-Z. Ye, Z. Zhu, B.L. Wanner, and C.T. Walsh, J. Biol. Chem. 265:4461-4471, 1990) Ten Pn- lesions lie in the phnD, phnE, phnH, phnJ, phnK, phnO, and phnP genes. We propose a smaller gene cluster with 14 open reading frames, phnC to phnP, which probably encode transporter and regulatory functions, in addition to proteins needed in Pn biodegradation. On the basis of the effects on phosphite (Pt), P(i) ester, and P(i) use, we propose that PhnC, PhnD, and PhnE constitute a binding protein-dependent Pn transporter which also transports Pt, P(i) esters, and P(i). We propose that PhnO has a regulatory role because a phnO lesion affects no biochemical function, except for those due to polarity. Presumably, the 10 other phn gene products mostly act in an enzyme complex needed for breaking the stable carbon-phosphorus bond. Interestingly, all Pn- mutations abolish the use not only of Pn but also of Pt, in which P is in the +3 oxidation state. Therefore, Pn metabolism and Pt metabolism are related, supporting a biochemical mechanism for carbon-phosphorus bond cleavage which involves redox chemistry at the P center. Furthermore, our discovery of P(i)-regulated genes for the assimilation of reduced P suggests that a P redox cycle may be important in biology.
引用
收藏
页码:587 / 600
页数:14
相关论文
共 56 条
[41]  
Rosenberg H., 1987, ION TRANSPORT PROKAR, P205, DOI 10.1016/B978-0-12-596935-2.50009-8
[42]   PHOSPHONATE UTILIZATION BY BACTERIAL CULTURES AND ENRICHMENTS FROM ENVIRONMENTAL-SAMPLES [J].
SCHOWANEK, D ;
VERSTRAETE, W .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1990, 56 (04) :895-903
[43]   HIGH-AFFINITY L-ARABINOSE TRANSPORT OPERON - NUCLEOTIDE-SEQUENCE AND ANALYSIS OF GENE-PRODUCTS [J].
SCRIPTURE, JB ;
VOELKER, C ;
MILLER, S ;
ODONNELL, RT ;
POLGAR, L ;
RADE, J ;
HORAZDOVSKY, BF ;
HOGG, RW .
JOURNAL OF MOLECULAR BIOLOGY, 1987, 197 (01) :37-46
[44]   FRAGMENTATIVE AND STEREOCHEMICAL ISOMERIZATION PROBES FOR HOMOLYTIC CARBON TO PHOSPHORUS BOND SCISSION CATALYZED BY BACTERIAL CARBON PHOSPHORUS LYASE [J].
SHAMES, SL ;
WACKETT, LP ;
LABARGE, MS ;
KUCZKOWSKI, RL ;
WALSH, CT .
BIOORGANIC CHEMISTRY, 1987, 15 (04) :366-373
[45]   BACTERIAL CARBON-PHOSPHORUS LYASE - PRODUCTS, RATES, AND REGULATION OF PHOSPHONIC AND PHOSPHINIC ACID METABOLISM [J].
WACKETT, LP ;
SHAMES, SL ;
VENDITTI, CP ;
WALSH, CT .
JOURNAL OF BACTERIOLOGY, 1987, 169 (02) :710-717
[46]   INVOLVEMENT OF THE PHOSPHATE REGULON AND THE PSID LOCUS IN CARBON-PHOSPHORUS LYASE ACTIVITY OF ESCHERICHIA-COLI K-12 [J].
WACKETT, LP ;
WANNER, BL ;
VENDITTI, CP ;
WALSH, CT .
JOURNAL OF BACTERIOLOGY, 1987, 169 (04) :1753-1756
[47]  
Wanner B.L., 1990, MOL BASIS BACTERIAL, P152
[48]   PHOSPHATE-CONTROLLED GENE-EXPRESSION IN ESCHERICHIA-COLI-K12 USING MUDL-DIRECTED LACZ FUSIONS [J].
WANNER, BL ;
MCSHARRY, R .
JOURNAL OF MOLECULAR BIOLOGY, 1982, 158 (03) :347-363