DEGRADATION OF THE THIOCARBAMATE HERBICIDE EPTC (S-ETHYL DIPROPYLCARBAMOTHIOATE) AND BIOSAFENING BY RHODOCOCCUS SP STRAIN NI86/21 INVOLVE AN INDUCIBLE CYTOCHROME-P-450 SYSTEM AND ALDEHYDE DEHYDROGENASE

被引:156
作者
NAGY, I
SCHOOFS, G
COMPERNOLLE, F
PROOST, P
VANDERLEYDEN, J
DEMOT, R
机构
[1] CATHOLIC UNIV LEUVEN, FA JANSSENS LAB GENET, B-3001 HEVERLEE, BELGIUM
[2] CATHOLIC UNIV LEUVEN, DEPT CHEM, B-3001 HEVERLEE, BELGIUM
[3] CATHOLIC UNIV LEUVEN, REGA INST MED RES, B-3001 HEVERLEE, BELGIUM
关键词
D O I
10.1128/jb.177.3.676-687.1995
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Determination of the N-terminal sequences of two EPTC (S-ethyl dipropylcarbamothioate)-induced proteins from thiocarbamate-degrading Rhodococcus sp. strain N186/21 resolved by two-dimensional electrophoresis enabled the localization of the respective structural genes on two distinct DNA fragments. One of these strongly induced proteins is a NAD(+)-dependent dehydrogenase active on aliphatic aldehydes. The second protein was identified as a cytochrome P-450 enzyme. The cytochrome P-450 gene represents the first member of a new family, CYP116. Downstream of the cytochrome P-450 gene, two genes for a [2Fe-2S] ferredoxin (rhodocoxin) and a ferredoxin reductase are located. A putative regulatory gene encoding a new member of the AraC-XylS family of positive transcriptional regulators is divergently transcribed from the cytochrome P-450 gene. By hybridization, it was demonstrated that the aldehyde dehydrogenase gene is widespread in the Rhodococcus genus, but the components of the cytochrome P-450 system are unique to Rhodococcus sp. strain NI86/21. Overexpression in Escherichia coli was achieved for all of these proteins except for the regulatory protein. Evidence for the involvement of this cytochrome P-450 system in EPTC degradation and herbicide biosafening for maize was obtained by complementation experiments using EPTC-negative Rhodococcus erythropolis SQ1 and mutant FAJ2027 as acceptor strains. N dealkylation by cytochrome P-450 and conversion of the released aldehyde into the corresponding carboxylic acid by aldehyde dehydrogenase are proposed as the reactions initiating thiocarbamate catabolism in Rhodococcus sp. strain N186/21. In addition to the major metabolite N-depropyl EPTC, another degradation product was identified, EPTC-sulfoxide.
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收藏
页码:676 / 687
页数:12
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