Intelectin-2 is a broad-spectrum antimicrobial lectin
Abstract
Abstract Mammals regulate the localization, composition, and activity of their native microbiota at colonization sites. Lectins residing at these sites influence microbial populations, but their functional roles are often unclear. Intelectins are found in chordates at mucosal barriers, but their functions are not well characterized. In this study, we find that mouse intelectin-2 (mItln2) and human intelectin-2 (hItln2) engage and crosslink mucins via carbohydrate recognition. Moreover, both lectins recognize microbes within native microbial communities, including gram-positive and gram-negative isolates from the respiratory and gastrointestinal tracts. This ability to engage mammalian and microbial glycans arises from calcium-coordinated binding of carbohydrate residues within mucus and microbial surfaces. Microbes, but not human cells, bound by mItln2 or hItln2, suffer a loss of viability. These findings underscore the crucial antimicrobial role of mammalian intelectin-2 in mucosal defense, where it plays offensive (microbial killing) and defensive (mucus crosslinking) roles in regulating microbial colonization.
Article Details
Authors (23)
Amanda E. Dugan
Deepsing Syangtan
Eric B. Nonnecke
Rajeev S. Chorghade
Amanda L. Peiffer
Jenny J. Yao
Jessica Ille-Bunn
Dallis Sergio
Gleb Pishchany
Broad Institute of MIT and Harvard
Catherine Dhennezel
Broad Institute of MIT and Harvard
Hera Vlamakis
Sunhee Bae
Sheila Johnson
Chariesse Ellis
Soumi Ghosh
Jill W. Alty
Carolyn E. Barnes
Miri Krupkin
Gerardo Cárcamo-Oyarce
Department of Biological Engineering, Massachusetts Institute of Technology
Katharina Ribbeck
Department of Biological Engineering, Massachusetts Institute of Technology
Ramnik J. Xavier
Charles L. Bevins
Laura L. Kiessling