Anionic amino acids near the Pro-α-defensin N terminus mediate inhibition of bactericidal activity inmouse Pro-cryptdin-4

23Citations
Citations of this article
23Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

In mouse Paneth cells, α-defensins, termed cryptdins (Crps), are activated by matrix metalloproteinase-7-mediated proteolysis of inactive precursors (pro-Crps) to bactericidal forms. The activating cleavage step at Ser43 ↓ Ile44 in mouse pro-Crp4-(20-92) removes nine acidic amino acids that collectively block the membrane-disruptive behavior of the Crp4 moiety of the proform. This inhibitory mechanism has been investigated further to identify whether specific cluster(s) of electronegative amino acids in pro-Crp4-(20-43) are responsible for blocking bactericidal activity and membrane disruption. To test whether specific cluster(s) of electronegative amino acids in pro-Crp4-(20-43) have specific positional effects that block bactericidal peptide activity and membrane disruption, acidic residues positioned at the distal (Asp20, Asp26, Glu27, and Glu28), mid (Glu32 and Glu33), and proximal (Glu37, Glu38, and Asp39) clusters in pro-Crp4-(20-92) were mutagenized, and variants were assayed for differential effects of mutagenesis on bactericidal peptide activity. Substitution of the mid and proximal Asp and Glu clusters with Gly produced additive effects with respect to the induction of both bactericidal activity and membrane permeabilization of live Escherichia coli ML35 cells. In contrast, substitution of distal Glu and Asp residues with Gly or their deletion resulted in pro-Crp4-(20-92) variants with bactericidal and membrane-disruptive activities equal to or greater than that of fully mature Crp4. These findings support the conclusion that the most distal N-terminal anionic residues of pro-Crp4-(20-92) are primarily responsible for blocking Crp4-mediated membrane disruption in the precursor. © 2009 by The American Society for Biochemistry and Molecular Biology, Inc.

Cite

CITATION STYLE

APA

Figueredo, S. M., Weeks, C. S., Young, S. K., & Ouellette, A. J. (2009). Anionic amino acids near the Pro-α-defensin N terminus mediate inhibition of bactericidal activity inmouse Pro-cryptdin-4. Journal of Biological Chemistry, 284(11), 6826–6831. https://doi.org/10.1074/jbc.M807024200

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free