DEGRADATION OF FLUORENE BY BREVIBACTERIUM SP STRAIN DPO-1361 - A NOVEL C-C BOND-CLEAVAGE MECHANISM VIA 1,10-DIHYDRO-1,10-DIHYDROXYFLUOREN-9-ONE

被引:50
作者
TRENZ, SP
ENGESSER, KH
FISCHER, P
KNACKMUSS, HJ
机构
[1] INST SIEDLUNGSWASSERBAU WASSERGUTE & ABFALLWIRTSC,BIOL ABLUFTREININGUNG,D-70569 STUTTGART,GERMANY
[2] INST MICROBIOL,D-70569 STUTTGART,GERMANY
[3] INST ORGAN CHEM & ISOTOPENFORSCH,D-70569 STUTTGART,GERMANY
关键词
D O I
10.1128/jb.176.3.789-795.1994
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Angular dioxygenation has been established as the crucial step in dibenzofuran degradation by Brevibacterium sp. strain DPO 1361 (V. Strubel, K.H. Engesser, P. Fischer, and H.-J. Knackmuss, J. Bacteriol. 173:1932-1937, 1991). The same strain utilizes biphenyl and fluorene as sole sources of carbon and energy. The fluorene degradation sequence is proposed to be initiated by oxidation of the fluorene methylene group to 9-fluorenol. Cells grown on fluorene exhibit pronounced 9-fluorenol dehydrogenase activity. Angular dioxygenation of the 9-fluorenone thus formed yields 1,10-dihydro-1,10-dihydroxyfluoren-9-one (DDF). A mechanistic model is presented for the subsequent C-C bond cleavage by an NAD(+)-dependent DDF dehydrogenase, acting on the angular dihydrodiol. This enzyme was purified and characterized as a tetramer of four identical 40-kDa subunits. The following K-m values were determined: 13 mu M for DDF and 65 mu M for 2,3-dihydro-2,3-dihydroxybiphenyl. The enzyme also catalyzes the production of 3-(2'-carboxyphenyl)catechol, which was isolated, and structurally characterized, in the form of the corresponding lactone, 4-hydroxydibenzo-(b,d)-pyran-6-one. Stoichiometry analysis unequivocally demonstrates that angular dioxygenation constitutes the principal pathway in Brevibacterium sp. strain DPO 1361.
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页码:789 / 795
页数:7
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