bioRxiv · 10.64898/2026.06.30.735459
Structural assembly of the glycan-rich, chitin-reinforced adhesive of Hydra is coordinated by a lectin-like protein, HvAb1
Abstract
Aquatic animals deploy adhesives, in numerous essential functions, and reversibility is a key adaptation. The molecular mechanisms of reversible wet adhesion remain poorly understood. Using a model organism, the freshwater cnidarian Hydra vulgaris, we dissect the mechanism of molecular assembly in a secreted adhesive and uncover a glycan and protein-based architecture organized by a lectin-like protein, Hydra vulgaris adhesive protein 1 (HvAb1). We identify HvAb1 as a nonredundant organizer of the adhesive matrix, being basal-disc specific and secreted. Knockdown of HvAb1 severely impaired attachment and disrupted footprint architecture in a mosaic pattern, with only HvAb1-positive regions of the adhesive footprint retaining their normal structure. The adhesive is wheat germ agglutinin (WGA)-reactive and contains a fibrillar chitin-based sub-network, synthesized by a basal-disc-specific chitin synthase. Applying exogeneous chitinase abolished both WGA staining and Hydra attachment, indicating that WGA-positive components perform essential roles in adhesion. Our results therefore describe a glycan-dominated matrix, organized via a lectin-like protein (HvAb1), which is reinforced by chitin and enables reversible adhesion underwater. This establishes Hydra as a tractable model to better understand the principles of reversible adhesion underwater and, potentially, inform future bioinspired, sustainable adhesives.
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Achrainer, M., Ofer, J., Kanetscheider, M., Polz, L., Aldred, N., Gruener, K., Redl, S., Neumann, A., Seybold, A., Hobmayer, B., Lengerer, B.. 2026-07-01. Structural assembly of the glycan-rich, chitin-reinforced adhesive of Hydra is coordinated by a lectin-like protein, HvAb1. https://doi.org/10.64898/2026.06.30.735459
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