Cross-functionalities of Bacillus deacetylases involved in bacillithiol biosynthesis and bacillithiol-S-conjugate detoxification pathways

Author:

Fang Zhong1,Roberts Alexandra A.2,Weidman Karissa1,Sharma Sunil V.2,Claiborne Al3,Hamilton Christopher J.2,Dos Santos Patricia C.1

Affiliation:

1. Department of Chemistry, Wake Forest University, Winston-Salem, NC 27109, U.S.A.

2. School of Pharmacy, University of East Anglia, Norwich Research Park, Norwich NR4 7TJ, U.K.

3. Center for Structural Biology, Wake Forest University School of Medicine, Winston-Salem, NC 27109, U.S.A.

Abstract

BshB, a key enzyme in bacillithiol biosynthesis, hydrolyses the acetyl group from N-acetylglucosamine malate to generate glucosamine malate. In Bacillus anthracis, BA1557 has been identified as the N-acetylglucosamine malate deacetylase (BshB); however, a high content of bacillithiol (~70%) was still observed in the B. anthracis ∆BA1557 strain. Genomic analysis led to the proposal that another deacetylase could exhibit cross-functionality in bacillithiol biosynthesis. In the present study, BA1557, its paralogue BA3888 and orthologous Bacillus cereus enzymes BC1534 and BC3461 have been characterized for their deacetylase activity towards N-acetylglucosamine malate, thus providing biochemical evidence for this proposal. In addition, the involvement of deacetylase enzymes is also expected in bacillithiol-detoxifying pathways through formation of S-mercapturic adducts. The kinetic analysis of bacillithiol-S-bimane conjugate favours the involvement of BA3888 as the B. anthracis bacillithiol-S-conjugate amidase (Bca). The high degree of specificity of this group of enzymes for its physiological substrate, along with their similar pH–activity profile and Zn2+-dependent catalytic acid–base reaction provides further evidence for their cross-functionalities.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference35 articles.

1. The many faces of glutathione in bacteria;Masip;Antioxid. Redox Signaling,2006

2. Glutathione transferases in bacteria;Allocati;FEBS J.,2009

3. Transport of glutathione S-conjugates in Escherichia coli;Kałuzna;Biochem. Mol. Biol. Int.,1997

4. Mycothiol: synthesis, biosynthesis and biological functions of the major low molecular weight thiol in actinomycetes;Jothivasan;Nat. Prod. Rep.,2008

5. Biosynthesis and functions of mycothiol, the unique protective thiol of Actinobacteria;Newton;Microbiol. Mol. Biol. Rev.,2008

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