TY - JOUR
T1 - Human enterotoxigenic Escherichia coli (ETEC) infections elicit antibodies that broadly neutralize mucinases of pathogenic Escherichia coli and Shigella
AU - Buckley, David P.
AU - Akhtar, Marjahan
AU - Thapa, Mahima
AU - Schmitz, Aaron
AU - Turner, Jackson
AU - Vickers, Tim J.
AU - Khatoon, Nazia
AU - Kaisar, M. Hasanul
AU - Coggin, Jonathan A.
AU - Ganguli, Debayan
AU - Sheikh, Alaullah
AU - Laird, Renee M.
AU - Poly, Frédéric
AU - Porter, Chad K.
AU - Ruiz-Perez, Fernando
AU - Miller, Mark J.
AU - Chowdhury, Fahima
AU - Bhuiyan, Tafiqur R.
AU - Qadri, Firdausi
AU - Trillo-Muyo, Sergio
AU - Dolan, Brendan
AU - der Post, Sjoerd van
AU - Ellebedy, Ali
AU - Berndsen, Zachary T.
AU - Fleckenstein, James M.
N1 - Publisher Copyright:
Copyright © 2026 the Author(s).
PY - 2026/6/23
Y1 - 2026/6/23
N2 - Enterotoxigenic Escherichia coli (ETEC) and Shigella are the most common bacterial diarrheal pathogens among young children of low-middle income regions. Enteric pathogens must overcome formidable host defenses, including the protective barrier formed by intestinal mucus. ETEC produce a virulence protein called EatA, a member of the Serine Protease Autotransporter of the Enterobacteriae (SPATE) family, where the secreted passenger domain (EatAp) specifically degrades MUC2, the major mucus secreted by goblet cells of the human intestine. Notably, some Shigella spp., as well as other diarrheagenic E. coli pathovars, secrete homologues of EatA known as SepA, and Pic. Here, we demonstrate that EatA, SepA, and Pic are functionally redundant MUC2 mucinases and that recombinant monoclonal antibodies (mAbs) derived from plasmablasts of ETEC-infected humans can inhibit MUC2 degradation by all three proteases. We present cryo-EM structures of EatA and the related SPATE proteins, SepA, and Pic, complexed to fragment antigen-binding portions of these mAbs to demonstrate that those targeting a core β-helix epitope shared by all three SPATE molecules broadly neutralize the capacity to degrade MUC2. These mAbs effectively prevent MUC2 degradation by each SPATE as well as mucus penetration by ETEC, Shigella flexneri, and Pic-producing enteroaggregative E. coli (EAEC). We anticipate that these studies could facilitate rational design of vaccines that broadly protect against major enteric pathogens by targeting a shared virulence feature.
AB - Enterotoxigenic Escherichia coli (ETEC) and Shigella are the most common bacterial diarrheal pathogens among young children of low-middle income regions. Enteric pathogens must overcome formidable host defenses, including the protective barrier formed by intestinal mucus. ETEC produce a virulence protein called EatA, a member of the Serine Protease Autotransporter of the Enterobacteriae (SPATE) family, where the secreted passenger domain (EatAp) specifically degrades MUC2, the major mucus secreted by goblet cells of the human intestine. Notably, some Shigella spp., as well as other diarrheagenic E. coli pathovars, secrete homologues of EatA known as SepA, and Pic. Here, we demonstrate that EatA, SepA, and Pic are functionally redundant MUC2 mucinases and that recombinant monoclonal antibodies (mAbs) derived from plasmablasts of ETEC-infected humans can inhibit MUC2 degradation by all three proteases. We present cryo-EM structures of EatA and the related SPATE proteins, SepA, and Pic, complexed to fragment antigen-binding portions of these mAbs to demonstrate that those targeting a core β-helix epitope shared by all three SPATE molecules broadly neutralize the capacity to degrade MUC2. These mAbs effectively prevent MUC2 degradation by each SPATE as well as mucus penetration by ETEC, Shigella flexneri, and Pic-producing enteroaggregative E. coli (EAEC). We anticipate that these studies could facilitate rational design of vaccines that broadly protect against major enteric pathogens by targeting a shared virulence feature.
KW - enterotoxigenic E. coli
KW - mucin
KW - serine protease
KW - Shigella
KW - vaccines
UR - https://www.scopus.com/pages/publications/105042942963
U2 - 10.1073/pnas.2614012123
DO - 10.1073/pnas.2614012123
M3 - Article
C2 - 42296351
AN - SCOPUS:105042942963
SN - 0027-8424
VL - 123
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 25
M1 - e2614012123
ER -