Abstract
Background: A key step of anthrax toxin action involves the formation of a protein-translocating pore within the endosomal membrane by the Protective Antigen (PA) moiety. Formation of this transmembrane pore by PA involves interaction of the seven 2β2-2β3 loops of the heptameric precursor to generate a 14-strand transmembrane β barrel. Methodology/Principal Findings: We examined the effects on pore formation, protein translocation, and cytotoxicity, of mutating two phenylalanines, F313 and F314, that lie at the tip the β barrel, and a third one, F324, that lies part way up the barrel. Conclusions/Significance: Our results show that the function of these phenylalanine residues is to mediate membrane insertion and formation of stable transmembrane channels. Unlike F427, a key luminal residue in the cap of the pore, F313, F314, and F324 do not directly affect protein translocation through the pore. Our findings add to our knowledge of structure-function relationships of a key virulence factor of the anthrax bacillus. © 2009 Wang et al.
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CITATION STYLE
Wang, J., Vernier, G., Fischer, A., & Collier, R. J. (2009). Functions of phenylalanine residues within the β-barrel stem of the anthrax toxin pore. PLoS ONE, 4(7). https://doi.org/10.1371/journal.pone.0006280
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