Abstract

Colicin M (Cma) is specifically imported into the periplasm of Escherichia coli and kills the cells. Killing depends on the periplasmic peptidyl prolyl cis-trans isomerase/chaperone FkpA. To identify the Cma prolyl bonds targeted by FkpA, we replaced the 15 proline residues individually with alanine. Seven mutant proteins were fully active; Cma(P129A), Cma(P176A), and Cma(P260A) displayed 1%, and Cma(P107A) displayed 10% of the wild-type activity. Cma(P107A), Cma(P129A), and Cma(P260A), but not Cma(P176A), killed cells after entering the periplasm via osmotic shock, indicating that the former mutants were translocation-deficient; Cma(P129A) did not bind to the FhuA outer membrane receptor. The crystal structures of Cma and Cma(P176A) were identical, excluding inactivation of the activity domain located far from Pro-176. In a new peptidyl prolyl cis-trans isomerase assay, FkpA isomerized the Cma prolyl bond in peptide Phe-Pro-176 at a high rate, but Lys-Pro-107 and Leu-Pro-260 isomerized at only <10% of that rate. The four mutant proteins secreted into the periplasm via a fused signal sequence were toxic but much less than wild-type Cma. Wild-type and mutant Cma proteins secreted or translocated across the outer membrane by energy-coupled import or unspecific osmotic shock were only active in the presence of FkpA. We propose that Cma unfolds during transfer across the outer or cytoplasmic membrane and refolds to the active form in the periplasm assisted by FkpA. Weak refolding of Cma(P176A) would explain its low activity in all assays. Of the four proline residues identified as being important for Cma activity, Phe-Pro-176 is most likely targeted by FkpA.

Highlights

  • Colicin M (Cma)2 is synthesized by Escherichia coli cells that carry a pColBM plasmid and is unspecifically released to a low extent

  • If periplasmic Cma activity depends on the FkpA prolyl cis-trans isomerase function and not, or not

  • Isolation of Pro 3 Ala Colicin M (Cma) Mutants—We previously have shown that FkpA is required for killing E. coli K-12 by Cma [11]

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Summary

Cma Activation by FkpA

AroB thi tsx malT FϪ ompT gal dcm lon hsdB (rBϪ mBϪ) ␭(DE3) lacI lacUV5-T7 gene 1 BL21(DE3) fhuA AB2847 ⌬fhuA. (3) [11] [11] [11] [53] [33] This study only on the FkpA chaperone function, replacement of the proline residue that is cis-trans-isomerized should prevent activation. To test this premise we replaced each of the 15 proline residues in Cma individually with alanine. We identified one prolyl bond that could serve as the target of FkpA PPIase catalysis

EXPERIMENTAL PROCEDURES
Cma dilution dilution dilution
RESULTS
Crystallization conditions Cryo protectant added
Percent of input
Cma prolyl bond
DISCUSSION
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