Literature DB >> 25434265

Stereochemistry of enzymatic transformations of (+)β- and (-)β-HBCD with LinA2--a HCH-degrading bacterial enzyme of Sphingobium indicum B90A.

Norbert V Heeb1, Simon A Wyss2, Birgit Geueke3, Thomas Fleischmann3, Hans-Peter E Kohler3, W Bernd Schweizer4, Heidi Moor2, Peter Lienemann5.   

Abstract

LinA2, a bacterial enzyme expressed in various Sphingomonadaceae, catalyzes the elimination of HCl from hexachlorocyclohexanes (HCHs) and, as discussed here, the release of HBr from certain hexabromocyclododecanes (HBCDs). Both classes of compounds are persistent organic pollutants now regulated under the Stockholm Convention. LinA2 selectively catalyzes the transformation of β-HBCDs; other stereoisomers like α-, γ-, and δ-HBCDs are not converted. The transformation of (-)β-HBCD is considerably faster than that of its enantiomer. Here, we present the XRD crystal structure of 1E,5S,6S,9R,10S-pentabromocyclododecene (PBCDE) and demonstrate that its enantiomer with the 1E,5R,6R,9S,10R-configuration is the only metabolite formed during LinA2-catalyzed dehydrobromination of (-)β-HBCD. Formation of this product can be rationalized by HBr elimination at C5 and C6. A reasonable enzyme-substrate complex with the catalytic dyad His-73 and Asp-25 approaching the hydrogen at C6 and a cationic pocket of Lys-20, Try-42 and Arg-129 binding the leaving bromine at C5 was found from in silico docking experiments. A second PBCDE of yet unknown configuration was obtained from (+)β-HBCD. We predicted its stereochemistry to be 1E,5S,6S,9S,10R-PBCDE from docking experiments. The enzyme-substrate complex obtained from LinA2 and an activated conformation of (+)β-HBCD allows the HBr elimination at C9 and C10 leading to the predicted product. Both modeled enzyme-substrate complexes are in line with 1,2-diaxial HBr eliminations. In conclusion, LinA2, a bacterial enzyme of the HCH-degrading strain Sphingobium indicum B90A was able to stereoselectively convert β-HBCDs. Configurations of both PBCDE metabolites were predicted by molecular docking experiments and confirmed in one case by XRD data.
Copyright © 2014 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Brominated flame retardants; Crystal structure analysis; HBCD biotransformation; LinA2 metabolites; Pentabromocyclododecenes

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Year:  2014        PMID: 25434265     DOI: 10.1016/j.chemosphere.2014.11.008

Source DB:  PubMed          Journal:  Chemosphere        ISSN: 0045-6535            Impact factor:   7.086


  3 in total

1.  Transformation of HBCDs by Rhodococcus sp. stu-38.

Authors:  Fei Yu; Wenqi Luo; Yuyang Li; Shanshan Meng; Xianbin Lin; Lele Li; Xueying Ye; Hui Wang; Tao Peng; Tongwang Huang; Zhong Hu
Journal:  Curr Microbiol       Date:  2022-05-20       Impact factor: 2.188

2.  Evidence of α-, β- and γ-HCH mixture aerobic degradation by the native actinobacteria Streptomyces sp. M7.

Authors:  P E Sineli; G Tortella; J S Dávila Costa; C S Benimeli; S A Cuozzo
Journal:  World J Microbiol Biotechnol       Date:  2016-04-02       Impact factor: 3.312

Review 3.  Microbial debromination of hexabromocyclododecanes.

Authors:  Fei Yu; Yuyang Li; Hui Wang; Tao Peng; Yi-Rui Wu; Zhong Hu
Journal:  Appl Microbiol Biotechnol       Date:  2021-06-02       Impact factor: 4.813

  3 in total

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