Electron-bifurcation and fluoride efflux systems in Acetobacterium spp. drive defluorination of perfluorinated unsaturated carboxylic acids

Y Yu, F Xu, W Zhao, C Thoma, S Che, JE Richman… - bioRxiv, 2023 - biorxiv.org
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 …

Electron-bifurcation and fluoride efflux systems in Acetobacterium spp. drive defluorination of perfluorinated unsaturated carboxylic acids.

Y Yu, F Xu, W Zhao, C Thoma, S Che… - Biorxiv: the Preprint …, 2023 - europepmc.org
Enzymatic cleavage of CF bonds in per-and polyfluoroalkyl substances (PFAS) is largely
unknown but avidly sought to promote systems biology for PFAS bioremediation. Here, we …

Electron-bifurcation and fluoride efflux systems in Acetobacterium spp. drive defluorination of perfluorinated unsaturated carboxylic acids

Y Yu, F Xu, W Zhao, C Thoma, S Che, JE Richman… - bioRxiv - ncbi.nlm.nih.gov
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 …

Electron-bifurcation and fluoride efflux systems in Acetobacterium spp. drive defluorination of perfluorinated unsaturated carboxylic acids

Y Yu, F Xu, W Zhao, C Thoma, S Che… - … : the preprint server …, 2023 - pubmed.ncbi.nlm.nih.gov
Enzymatic cleavage of CF bonds in per-and polyfluoroalkyl substances (PFAS) is largely
unknown but avidly sought to promote systems biology for PFAS bioremediation. Here, we …

Electron-bifurcation and fluoride efflux systems inAcetobacteriumspp. drive defluorination of perfluorinated unsaturated carboxylic acids

Y Yu, F Xu, W Zhao, C Thoma, S Che, JE Richman… - 2023 - europepmc.org
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 …