4.8 Article

Helical antimicrobial peptides assemble into protofibril scaffolds that present ordered dsDNA to TLR9

Journal

NATURE COMMUNICATIONS
Volume 10, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-019-08868-w

Keywords

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Funding

  1. Systems and Integrative Biology Training Program [T32GM008185]
  2. Medical Scientist Training Program [T32GM008042]
  3. Dermatology Scientist Training Program at UCLA [T32AR071307]
  4. National Psoriasis Foundation
  5. NIH [R01GM106137, R01GM114237, R56AI125429-01A1]
  6. Robert A. Welch Foundation [F-1691]
  7. US DOE Office of Basic Energy Sciences [DE-AC02-76SF00515]

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Amphiphilicity in alpha-helical antimicrobial peptides (AMPs) is recognized as a signature of potential membrane activity. Some AMPs are also strongly immunomodulatory: LL37-DNA complexes potently amplify Toll-like receptor 9 (TLR9) activation in immune cells and exacerbate autoimmune diseases. The rules governing this proinflammatory activity of AMPs are unknown. Here we examine the supramolecular structures formed between DNA and three prototypical AMPs using small angle X-ray scattering and molecular modeling. We correlate these structures to their ability to activate TLR9 and show that a key criterion is the AMP's ability to assemble into superhelical protofibril scaffolds. These structures enforce spatially-periodic DNA organization in nanocrystalline immunocomplexes that trigger strong recognition by TLR9, which is conventionally known to bind single DNA ligands. We demonstrate that we can knock in this ability for TLR9 amplification in membrane-active AMP mutants, which suggests the existence of tradeoffs between membrane permeating activity and immunomodulatory activity in AMP sequences.

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