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PMID: 26637355 Published · ppublish English

Structural Basis of Stereospecificity in the Bacterial Enzymatic Cleavage of β-Aryl Ether Bonds in Lignin.

The Journal of biological chemistry ·Vol. 291 ·No. 10 ·2016-08-09

Helmich Kate E, Pereira Jose Henrique, Gall Daniel L, Heins Richard A, McAndrew Ryan P, Bingman Craig, Deng Kai, Holland Keefe C, Noguera Daniel R, Simmons Blake A, Sale Kenneth L, Ralph John, Donohue Timothy J, Adams Paul D, Phillips George N

Abstract

Lignin is a combinatorial polymer comprising monoaromatic units that are linked via covalent bonds. Although lignin is a potential source of valuable aromatic chemicals, its recalcitrance to chemical or biological digestion presents major obstacles to both the production of second-generation biofuels and the generation of valuable coproducts from lignin's monoaromatic units. Degradation of lignin has been relatively well characterized in fungi, but it is less well understood in bacteria. A catabolic pathway for the enzymatic breakdown of aromatic oligomers linked via β-aryl ether bonds typically found in lignin has been reported in the bacterium Sphingobium sp. SYK-6. Here, we present x-ray crystal structures and biochemical characterization of the glutathione-dependent β-etherases, LigE and LigF, from this pathway. The crystal structures show that both enzymes belong to the canonical two-domain fold and glutathione binding site architecture of the glutathione S-transferase family. Mutagenesis of the conserved active site serine in both LigE and LigF shows that, whereas the enzymatic activity is reduced, this amino acid side chain is not absolutely essential for catalysis. The results include descriptions of cofactor binding sites, substrate binding sites, and catalytic mechanisms. Because β-aryl ether bonds account for 50-70% of all interunit linkages in lignin, understanding the mechanism of enzymatic β-aryl ether cleavage has significant potential for informing ongoing studies on the valorization of lignin.

Keywords
X-ray crystallography enzyme catalysis enzyme mechanism enzyme structure lignin degradation plant cell wall protein structure stereoselectivity structural enzymology
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
Published
2016-08-09
Indexed
2016-03-05
Updated
2016-12-02
Language
English
Country/Region
United States
NLM ID
2985121R
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