Optimal antimicrobial response to a changing microbial background at a mucus interface
- 1. Racah Institute of Physics, Hebrew University of Jerusalem, Jerusalem 9190401, Israel
- 2. Institute of Physics and Mathematical Sciences, Southern Chile University, Valdivia, 5110566, Chile
- 3. Azrieli Faculty of Medicine, Bar-Ilan University, Safed 1311502, Israel
- 4. Department of Physics and Astronomy, University of Pittsburgh, Pittsburgh 15260, Pennsylvania, USA
Description
Complex lifeforms host microbiota, microbes that live synergistically with their host. Accordingly, hosts have mechanisms to defend against and tolerate the microbiota. The intestinal mucus, where these systems collide, plays a pivotal role in managing this relationship, yet lacks an integrative theoretical framework. We propose a minimal model to elucidate dynamics at this interface, focusing on the ileum's mucus defense. The model considers the effect of delay in host antimicrobial peptide secretion and how the host can use two different signals, from the bulk microbiota and from segmented filamentous bacteria (SFB), assuming that the SFB anticipate the bulk microbiota. We propose a theory whereby the host can optimize defense by minimizing antimicrobial peptide production and controlling bacterial exposure. Integrating two recent experiments, we show host dynamics are consistent with sensing both bulk and SFB, supporting our "optimal defense" hypothesis. Therefore, we propose that similar mechanisms could prove advantageous to other species and applicable beyond the ileum's mucus barrier.
Files
10.1103_PhysRevResearch.6.023027.pdf
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(5.1 MB)
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Additional details
Identifiers
Publishing Information
- Journal Title
- Physical Review Research
- Journal Volume
- 6
- Journal Issue
- 2
- Journal Page Range
- 14 pgs.
- ISSN
- 2643-1564
INIS
- Country of Publication
- United States
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- Subject category
- S60: APPLIED LIFE SCIENCES;
- Descriptors DEI
- AMINO ACID SEQUENCE; BACTERIA; CONTROL; DYNAMICS; FILAMENTS; HOST; INTERFACES; MATURATION; NEMATODES; PEPTIDES; PLANT CELLS; SIGNALS; VERTEBRATES
- Descriptors DEC
- ANIMALS; INVERTEBRATES; MECHANICS; MICROORGANISMS; MOLECULAR STRUCTURE; ORGANIC COMPOUNDS; PROTEINS
Optional Information
- Contract/Grant/Project number
- INS-INV 2022-09
- Notes
- Contact Email: amir.erez1@mail.huji.ac.il; Record automatically processed
- Funding organization
- Vicerrectoría de Investigación, Desarrollo y Creación Artística