Electron bifurcation and fluoride efflux systems implicated in defluorination of perfluorinated unsaturated carboxylic acids by Acetobacterium spp

Author:

Yu Yaochun1ORCID,Xu Fengjun1,Zhao Weiyang1,Thoma Calvin2ORCID,Che Shun1,Richman Jack E.2,Jin Bosen1ORCID,Zhu Yiwen1ORCID,Xing Yue1ORCID,Wackett Lawrence2ORCID,Men Yujie1ORCID

Affiliation:

1. Department of Chemical and Environmental Engineering, University of California, Riverside, Riverside, CA 92521, USA.

2. Department of Biochemistry, Molecular Biology and Biophysics and Biotechnology Institute, University of Minnesota, Twin Cities, MN 55108, USA.

Abstract

Enzymatic cleavage of C─F bonds in per- and polyfluoroalkyl substances (PFAS) is largely unknown but avidly sought to promote systems biology for PFAS bioremediation. Here, we report the reductive defluorination of α, β-unsaturated per- and polyfluorocarboxylic acids by Acetobacterium spp. The microbial defluorination products were structurally confirmed and showed regiospecificity and stereospecificity, consistent with their formation by enzymatic reactions. A comparison of defluorination activities among several Acetobacterium species indicated that a functional fluoride exporter was required for the detoxification of the released fluoride. Results from both in vivo inhibition tests and in silico enzyme modeling suggested the involvement of enzymes of the flavin-based electron-bifurcating caffeate reduction pathway [caffeoyl-CoA reductase (CarABCDE)] in the reductive defluorination. This is a report on specific microorganisms carrying out enzymatic reductive defluorination of PFAS, which could be linked to electron-bifurcating reductases that are environmentally widespread.

Publisher

American Association for the Advancement of Science (AAAS)

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