Microbial degradation of chloroaromatics: Use of the meta-cleavage pathway for mineralization of chlorobenzene

被引:112
作者
Mars, AE
Kasberg, T
Kaschabek, SR
vanAgteren, MH
Janssen, DB
Reineke, W
机构
[1] UNIV GRONINGEN, DEPT BIOCHEM, NL-9747 AG GRONINGEN, NETHERLANDS
[2] BERG UNIV GESAMTHSCH WUPPERTAL, D-42097 WUPPERTAL, GERMANY
关键词
D O I
10.1128/jb.179.14.4530-4537.1997
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Pseudomonas putida GJ31 is able to simultaneously grow on toluene and chlorobenzene. When cultures of this strain were inhibited with 3-fluorocatechol while growing on toluene or chlorobenzene, 3-methylcatechol or 3-chlorocatechol, respectively, accumulated in the medium. To establish the catabolic routes for these catechols, activities of enzymes of the (modified) ortho- and meta-cleavage pathways were measured in crude extracts of cells of P. putida GJ31 grown an various aromatic substrates, including chlorobenzene. The enzymes of the modified ortho-cleavage pathway were never present, while the enzymes of the meta-cleavage pathway were detected in all cultures. This indicated that chloroaromatics and methylaromatics are both converted via the meta-cleavage pathway. Meta cleavage of 3-chlorocatechol usually leads to the formation of a reactive acylchloride, which inactivates the catechol 2,3-dioxygenase and blocks further degradation of catechols. However, partially purified catechol 2,3-dioxygenase of P. putida GJ31 converted 3-chlorocatechol to 2-hydroxy-cis,cis-muconic acid, Apparently, P. putida GJ31 has a meta-cleavage enzyme which is resistant to inactivation by the acylchloride, providing this strain with the exceptional ability to degrade both toluene and chlorobenzene ria the meta-cleavage pathway.
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页码:4530 / 4537
页数:8
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