Potential Involvement of the South American Lungfish Intelectin-2 in Innate-Associated Immune Modulation

Author:

Bernardes Gabriela Patrícia Martins de Almeida1,Serra Gustavo Marques2ORCID,Silva Lucas da Silva e1ORCID,Martins Maíra Pompeu1ORCID,Perez Louise Neiva3,Molfetta Fábio Alberto de4ORCID,Santos Agenor Valadares2ORCID,Schneider Maria Paula Cruz1

Affiliation:

1. Laboratory of Genomics and Biotechnology, Biological Sciences Institute, Federal University of Pará (UFPA), Belém 66075-110, PA, Brazil

2. Laboratory of Biotechnology of Enzymes and Biotransformation, Biological Sciences Institute, Federal University of Pará (UFPA), Belém 66075-110, PA, Brazil

3. Department of Biological Sciences, Louisiana State University, Baton Rouge, LA 70803, USA

4. Laboratory of Molecular Modeling, Exact and Natural Sciences Institute, Federal University of Pará (UFPA), Belém 66075-110, PA, Brazil

Abstract

Intelectins belong to a family of lectins with specific and transitory carbohydrate interaction capabilities. These interactions are related to the activity of agglutinating pathogens, as intelectins play a significant role in immunity. Despite the prominent immune defense function of intelectins, limited information about its structural characteristics and carbohydrate interaction properties is available. This study investigated an intelectin transcript identified in RNA-seq data obtained from the South American lungfish (Lepidosiren paradoxa), namely LpITLN2-B. The structural analyses predicted LpITLN2-B to be a homo-trimeric globular protein with the fibrinogen-like functional domain (FReD), exhibiting a molecular mass of 57 kDa. The quaternary structure is subdivided into three monomers, A, B, and C, and each domain comprises 11 β-sheets: an anti-parallel β-sheet, a β-hairpin, and a disordered β-sheet structure. Molecular docking demonstrates a significant interaction with disaccharides rather than monosaccharides. The preferential interaction with disaccharides highlights the potential interaction with pathogen molecules, such as LPS and Poly(I:C). The hemagglutination assay inhibited lectins activity, especially maltose and sucrose, highlighting lectin activity in L. paradoxa samples. Overall, our results show the potential relevance of LpITLN2-B in L. paradoxa immune defense against pathogens.

Funder

Fundação Amazônia de Amparo a Estudos e Pesquisas

National Council for Scientific and Technological Development

Coordination for the Improvement of Higher Education Personnel

Publisher

MDPI AG

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