Studies on citrullinated LL-37: detection in human airways, antibacterial effects and biophysical properties

Author:

Al-Adwani Salma,Wallin Cecilia,Balhuizen Melanie D.,Veldhuizen Edwin J. A.,Coorens Maarten,Landreh Michael,Végvári Ákos,Smith Margaretha E.,Qvarfordt Ingemar,Lindén Anders,Gräslund Astrid,Agerberth Birgitta,Bergman Peter

Abstract

AbstractArginine residues of the antimicrobial peptide LL-37 can be citrullinated by peptidyl arginine deiminases, which reduce the positive charge of the peptide. Notably, citrullinated LL-37 has not yet been detected in human samples. In addition, functional and biophysical properties of citrullinated LL-37 are not fully explored. The aim of this study was to detect citrullinated LL-37 in human bronchoalveolar lavage (BAL) fluid and to determine antibacterial and biophysical properties of citrullinated LL-37. BAL fluid was obtained from healthy human volunteers after intra-bronchial exposure to lipopolysaccharide. Synthetic peptides were used for bacterial killing assays, transmission electron microscopy, isothermal titration calorimetry, mass-spectrometry and circular dichroism. Using targeted proteomics, we were able to detect both native and citrullinated LL-37 in BAL fluid. The citrullinated peptide did not kill Escherichia coli nor lysed human red blood cells. Both peptides had similar α-helical secondary structures but citrullinated LL-37 was more stable at higher temperatures, as shown by circular dichroism. In conclusion, citrullinated LL-37 is present in the human airways and citrullination impaired bacterial killing, indicating that a net positive charge is important for antibacterial and membrane lysing effects. It is possible that citrullination serves as a homeostatic regulator of AMP-function by alteration of key functions.

Funder

Vetenskapsrådet

Hjärt-Lungfonden

Torsten Söderbergs Stiftelse

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference36 articles.

1. Boman, H. G. Antibacterial peptides: Key components needed in immunity. Cell. 65, 205–207 (1991).

2. Zasloff, M. Antimicrobial peptides of multicellular organisms. Nature. 415, 389–395 (2002).

3. Hancock, R. E. W., Haney, E. F. & Gill, E. E. The immunology of host defence peptides: beyond antimicrobial activity. Nat. Rev. Immunol. 16, 321–334 (2016).

4. van der Does, A. M., Hiemstra, P. S. & Mookherjee, N. Antimicrobial host defence peptides: Immunomodulatory functions and translational prospects. In Advances in Experimental Medicine and Biology, pp. 149–171, Springer New York LLC, 1117, 149–171 (2019).

5. Zanetti, M. The role of cathelicidins in the innate host defenses of mammals. Curr. Issues Mol. Biol. 7, 179–196 (2005).

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