#Host-Microbe-glycan
Really enjoyed the opportunity to have the @kiesslinglab.bsky.social collaborate with the Imperiali Group on exploring human lectin interactions with glycans. #glycotime Some initial findings are here: www.biorxiv.org/content/10.1...
Glycan analysis probes inspired by human lectins for investigating host-microbe crosstalk
Human lectins are critical carbohydrate-binding proteins that recognize diverse glycoconjugates from microorganisms and can play a key role in host-microbe interactions. Despite their importance in im...
www.biorxiv.org
December 26, 2024 at 9:38 PM
Tools for investigating host-microbe crosstalk using glycan analysis probes inspired by human lectins
#glycotime #Glycobiology
Tools for investigating host-microbe crosstalk using glycan analysis probes inspired by human lectins
Abstract. Human lectins are critical carbohydrate-binding proteins that recognize diverse glycoconjugates from microorganisms and can play a key role in ho
academic.oup.com
June 1, 2025 at 2:39 PM
InteractHoMiG General Assembly – Summer 2025 Edition 🌟
On June 24th, 2025, we held the biannual General Assembly meeting of project InteractHoMiG.
More info: www.interacthomig.eu
#EICPrecisionnutrition #InteractHoMiG #HMOs #Host-Microbe-glycan
June 27, 2025 at 6:34 PM
I will do a more elaborate post once the formatted papers are available, but if you are curious here are the author manuscripts👀: academic.oup.com/femsec/advan...
Distinct in vitro utilisation and degradation of porcine gastric mucin glycans by human intestinal bacteria
Abstract. Mucin glycan degradation and utilisation by microbes colonising the human intestine is an essential host-microbe interaction. In this study, degr
academic.oup.com
June 25, 2025 at 4:39 PM
Glycan analysis probes inspired by human lectins for investigating host-microbe crosstalk https://www.biorxiv.org/content/10.1101/2024.12.24.630132v1
December 25, 2024 at 3:45 PM
(BioRxiv All) Salmonella SiiE-mediated apical invasion into colonocytes depends on MUC1 α2,3-linked sialic acids: MUC1 is a highly O-glycosylated cell-bound mucin that plays key roles in intestinal mucosal maintenance and microbe-host interactions. The enteropathogen… #BioRxiv #MassSpecRSS
Salmonella SiiE-mediated apical invasion into colonocytes depends on MUC1 α2,3-linked sialic acids
MUC1 is a highly O-glycosylated cell-bound mucin that plays key roles in intestinal mucosal maintenance and microbe-host interactions. The enteropathogen Salmonella enterica expresses a giant adhesin SiiE, which mediates interaction with MUC1 and apical invasion of epithelial cells in a sialic acid-dependent manner. Here, we investigated the glycan specificity of the SiiE-MUC1 interaction and the expression of glycosylated MUC1 receptor in advanced intestinal epithelial models. Expression of the SiiE adhesin by Salmonella was highest in late logarithmic growth, could be induced by aerobic shock, and was detectable on the bacterial surface and in culture supernatant. Purified SiiE bound multiple O-glycan structures in a MUC1 glycopeptide array, including those bearing terminal sialic acids. Single-cell RNA sequencing of human intestinal epithelium showed that high MUC1 expression correlated with expression of ST3GAL and ST6GALNAC sialyltransferases, indicating the potential presence of both 2,3- and 2,6-linked sialylation in vivo. In HT29-MTX intestinal cultures, both 2,3- and 2,6-linked sialic acids could be detected on the apical surface and 2,3-sialic acid staining colocalized with MUC1. Mass spectrometry-based O-glycomics demonstrated that MUC1 carried predominantly core 1 and core 2 O-glycans decorated with 2,3-linked sialylation. Removal or blocking of 2,3-linked sialic acids abolished Salmonella invasion through the SiiE-MUC1 route. In advanced ex vivo cultures of human ileum and colon, MUC1 was detected in the colon, where regions showed positive staining for 2,3-linked sialic acids, but not in the ileum. After infection of the ex vivo tissues, Salmonella was found in close proximity to 2,3-sialylated colonic MUC1. Together, these findings demonstrate that Salmonella SiiE-mediated apical invasion of colonocytes depends on 2,3-sialylated O-glycans on MUC1. In humans, this pathway might be most relevant during Salmonella invasion in the colon.
dlvr.it
July 22, 2026 at 6:58 AM
Progress Update
This year, we expanded our HMO library and advanced screening using Caco-2 and HuMiX 4.0 models. Forward to host-microbe-glycan interactions and precision nutrition.
More info at interacthomig.eu
#EICPrecisionNutrition
InteractHoMiG
interacthomig.eu
February 6, 2026 at 9:33 AM
Glycan analysis probes inspired by human lectins for investigating host-microbe crosstalk https://www.biorxiv.org/content/10.1101/2024.12.24.630132v1
December 25, 2024 at 3:46 PM