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PMID: 24509858 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, U.S. Gov't, Non-P.H.S.

Stereochemical features of glutathione-dependent enzymes in the Sphingobium sp. strain SYK-6 β-aryl etherase pathway.

The Journal of biological chemistry ·Vol. 289 ·No. 12 ·2014-03-21 ·页码 8656-67

Gall DL, Kim H, Lu F, Donohue TJ, Noguera DR, Ralph J

Abstract

Glutathione-dependent enzymes play important protective, repair, or metabolic roles in cells. In particular, enzymes in the glutathione S-transferase (GST) superfamily function in stress responses, defense systems, or xenobiotic detoxification. Here, we identify novel features of bacterial GSTs that cleave β-aryl ether bonds typically found in plant lignin. Our data reveal several original features of the reaction cycle of these GSTs, including stereospecific substrate recognition and stereoselective formation of β-S-thioether linkages. Products of recombinant GSTs (LigE, LigP, and LigF) are β-S-glutathionyl-α-keto-thioethers that are degraded by a β-S-thioetherase (LigG). All three Lig GSTs produced the ketone product (β-S-glutathionyl-α-veratrylethanone) from an achiral side chain-truncated model substrate (β-guaiacyl-α-veratrylethanone). However, when β-etherase assays were conducted with a racemic model substrate, β-guaiacyl-α-veratrylglycerone, LigE- or LigP-catalyzed reactions yielded only one of two potential product (β-S-glutathionyl-α-veratrylglycerone) epimers, whereas the other diastereomer (differing in configuration at the β-position (i.e. its β-epimer)) was produced only in the LigF-catalyzed reaction. Thus, β-etherase catalysis causes stereochemical inversion of the chiral center, converting a β(R)-substrate to a β(S)-product (LigE and LigP), and a β(S)-substrate to a β(R)-product (LigF). Further, LigG catalyzed glutathione-dependent β-S-thioether cleavage with β-S-glutathionyl-α-veratrylethanone and with β(R)-configured β-S-glutathionyl-α-veratrylglycerone but exhibited no or significantly reduced β-S-thioether-cleaving activity with the β(S)-epimer, demonstrating that LigG is a stereospecific β-thioetherase. We therefore propose that multiple Lig enzymes are needed in this β-aryl etherase pathway in order to cleave the racemic β-ether linkages that are present in the backbone of the lignin polymer.

Keywords
Bacterial Metabolism Enzyme Catalysis Glutathione Glutathione S-Transferase Lignin Degradation Stereoselectivity Stereospecificity Thiol beta-Aryl Etherase beta-S-Thioetherase
MeSH 主题词
Bacterial Proteins/metabolism Glutathione/metabolism Lignin/chemistry,metabolism Oxidoreductases/metabolism Recombinant Proteins/metabolism Signal Transduction Sphingomonadaceae/chemistry,enzymology,metabolism Stereoisomerism Substrate Specificity Sulfhydryl Compounds/chemistry,metabolism
化学物质
Bacterial Proteins Recombinant Proteins Sulfhydryl Compounds Lignin Oxidoreductases aryl ether cleaving enzyme Glutathione
作者与单位
共 6 位作者,点击展开单位 / ORCID
Gall Daniel L
From the Departments of Civil and Environmental Engineering.
Kim Hoon
Lu Fachuang
Donohue Timothy J
Noguera Daniel R
Ralph John
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
1083-351X
Published
2014-03-21
电子出版
2014-00-07
页码
8656-67
Language
English
Country/Region
United States
NLM ID
2985121R
基金资助
NIGMS NIH HHS · T32 GM008349 · United States
NIGMS NIH HHS · T32 GM08349 · United States
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