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Fluoride Resistance And Transport By Riboswitch-Controlled Clc Antiporters.

Proc Natl Acad Sci U S A.. 2012-09;  109(38):15289 - 15294
Randy B. Stockbridge, Hyun-Ho Lim, Renee Otten, Carole Williams, Tania Shane, Zasha Weinberg, and Christopher Miller. Department of Biochemistry, Howard Hughes Medical Institute, Brandeis University, Waltham, MA 02454, USA.
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摘要

A subclass of bacterial CLC anion-transporting proteins, phylogenetically distant from long-studied CLCs, was recently shown to be specifically up-regulated by F(-). We establish here that a set of randomly selected representatives from this "CLC(F)" clade protect Escherichia coli from F(-) toxicity, and that the purified proteins catalyze transport of F(-) in liposomes. Sequence alignments and membrane transport experiments using (19)F NMR, osmotic response assays, and planar lipid bilayer recordings reveal four mechanistic traits that set CLC(F) proteins apart from all other known CLCs. First, CLC(F)s lack conserved residues that form the anion binding site in canonical CLCs. Second, CLC(F)s exhibit... More

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