Deciphering the molecular mechanisms underlying sea urchin reversible adhesion: A quantitative proteomics approach. 2016

Nicolas Lebesgue, and Gonçalo da Costa, and Raquel Mesquita Ribeiro, and Cristina Ribeiro-Silva, and Gabriel G Martins, and Valeria Matranga, and Arjen Scholten, and Carlos Cordeiro, and Albert J R Heck, and Romana Santos
Netherlands Proteomics Center, Padualaan 8, 3584, CH, Utrecht, Netherlands; Biomolecular Mass Spectrometry and Proteomics, Bijvoet Center for Biomolecular Research and Utrecht Institute of Pharmaceutical Sciences, Utrecht University, Padualaan 8, 3584, CH, Utrecht, Netherlands.

Marine bioadhesives have unmatched performances in wet environments, being an inspiration for biomedical applications. In sea urchins specialized adhesive organs, tube feet, mediate reversible adhesion, being composed by a disc, producing adhesive and de-adhesive secretions, and a motile stem. After tube foot detachment, the secreted adhesive remains bound to the substratum as a footprint. Sea urchin adhesive is composed by proteins and sugars, but so far only one protein, Nectin, was shown to be over-expressed as a transcript in tube feet discs, suggesting its involvement in sea urchin adhesion. Here we use high-resolution quantitative mass-spectrometry to perform the first study combining the analysis of the differential proteome of an adhesive organ, with the proteome of its secreted adhesive. This strategy allowed us to identify 163 highly over-expressed disc proteins, specifically involved in sea urchin reversible adhesion; to find that 70% of the secreted adhesive components fall within five protein groups, involved in exocytosis and microbial protection; and to provide evidences that Nectin is not only highly expressed in tube feet discs but is an actual component of the adhesive. These results give an unprecedented insight into the molecular mechanisms underlying sea urchin adhesion, and opening new doors to develop wet-reliable, reversible, and ecological biomimetic adhesives. CONCLUSIONS Sea urchins attach strongly but in a reversible manner to substratum, being a valuable source of inspiration for industrial and biomedical applications. Yet, the molecular mechanisms governing reversible adhesion are still poorly studied delaying the engineering of biomimetic adhesives. We used the latest mass spectrometry techniques to analyze the differential proteome of an adhesive organ and the proteome of its secreted adhesive, allowing us to uncover the key players in sea urchin reversible adhesion. We demonstrate, that Nectin, a protein previously pointed out as potentially involved in sea urchin adhesion, is not only highly expressed in tube feet discs, but is a genuine component of the secreted adhesive.

UI MeSH Term Description Entries
D000075983 Nectins A family of calcium-independent cell adhesion molecules of the immunoglobulin superfamily. They are expressed by most cell types and mediate both homotypic and heterotypic cell-cell adhesion. Nectins function in a variety of morphogenetic and developmental processes that include organogenesis of the eye, ear, tooth, and cerebral cortex; they also play roles in viral infection and cell proliferation. CD111 Antigen,CD112 Antigen,CD113 Antigen,Herpesvirus Entry Mediator C,HevC Protein,Human Poliovirus Receptor Related 1,Nectin,Nectin-1,Nectin-1delta,Nectin-2,Nectin-2alpha,Nectin-2delta,Nectin-2gamma,Nectin-3,Nectin1delta,PVRL1,Poliovirus Receptor-Related Protein 1,Prr1 Protein,Antigen, CD111,Antigen, CD112,Antigen, CD113,Nectin 1,Nectin 1delta,Nectin 2,Nectin 2alpha,Nectin 2delta,Nectin 2gamma,Nectin 3,Poliovirus Receptor Related Protein 1
D000269 Adhesives Substances that cause the adherence of two surfaces. They include glues (properly collagen-derived adhesives), mucilages, sticky pastes, gums, resins, or latex. Glues,Mucilage Adhesive,Mucilage Adhesives,Mucilages, Adhesive,Adhesive,Adhesive Mucilage,Adhesive Mucilages,Adhesive, Mucilage,Adhesives, Mucilage,Glue,Mucilage, Adhesive
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D015815 Cell Adhesion Molecules Surface ligands, usually glycoproteins, that mediate cell-to-cell adhesion. Their functions include the assembly and interconnection of various vertebrate systems, as well as maintenance of tissue integration, wound healing, morphogenic movements, cellular migrations, and metastasis. Cell Adhesion Molecule,Intercellular Adhesion Molecule,Intercellular Adhesion Molecules,Leukocyte Adhesion Molecule,Leukocyte Adhesion Molecules,Saccharide-Mediated Cell Adhesion Molecules,Saccharide Mediated Cell Adhesion Molecules,Adhesion Molecule, Cell,Adhesion Molecule, Intercellular,Adhesion Molecule, Leukocyte,Adhesion Molecules, Cell,Adhesion Molecules, Intercellular,Adhesion Molecules, Leukocyte,Molecule, Cell Adhesion,Molecule, Intercellular Adhesion,Molecule, Leukocyte Adhesion,Molecules, Cell Adhesion,Molecules, Intercellular Adhesion,Molecules, Leukocyte Adhesion
D047328 Paracentrotus A genus of SEA URCHINS in the family Echinidae found primarily on the western coasts of Ireland. Paracentrotus lividus
D040901 Proteomics The systematic study of the complete complement of proteins (PROTEOME) of organisms. Peptidomics

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