4.5 Article

F-type lectin from serum of the Antarctic teleost fish Trematomus bernacchii (Boulenger, 1902): Purification, structural characterization, and bacterial agglutinating activity

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ELSEVIER SCIENCE INC
DOI: 10.1016/j.cbpb.2021.110633

关键词

Lectins; F-type lectin; Antarctic fish; Trematomus bemacchii; Bacterial agglutination

资金

  1. University of Palermo, Italy [PJ_RIC_FFABR_2017_004312 MC, PJ_RIC_F-FABR_2017_161753 MGP]

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The study isolated a Ca++-independent fucose-binding protein from the serum of Antarctic fish Trematomus bernacchii and characterized its carbohydrate binding properties, thermal stability, and potential ability to recognize bacterial pathogens. Results showed that the protein is a bona fide member of the FTL family, with binding activity at low temperatures and the ability to agglutinate bacteria, suggesting its involvement in host-pathogen interactions in cold environments.
The increasing availability of sequenced genomes has enabled a deeper understanding of the complexity of fish lectin repertoires involved in early development and immune recognition. The teleost fucose-type lectin (FTL) family includes proteins that preferentially bind fucose and display tandemly arrayed carbohydrate-recognition domains (CRDs) or are found in mosaic combinations with other domains. They function as opsonins, promoting phagocytosis and the clearance of microbial pathogens. The Antarctic fish Trematomus bernacchii is a Perciforme living at extremely low temperatures (-1.68 degrees C) which is considered a model for studying adaptability to the variability of environmental waters. Here, we isolated a Ca++-independent fucose-binding protein from the serum of T. bernacchii by affinity chromatography with apparent molecular weights of 32 and 30 kDa under reducing and non-reducing conditions, respectively. We have characterized its carbohydrate binding properties, thermal stability and potential ability to recognize bacterial pathogens. In western blot analysis, the protein showed intense cross-reactivity with antibodies specific for a sea bass (Dicentrarchus labrax) fucose-binding lectin. In addition, its molecular and structural aspects, showing that it contains two CRD-FTLs confirmed that T. bernacchii FTL (TbFTL) is a bona fide member of the FTL family, with binding activity at low temperatures and the ability to agglutinate bacteria, thereby suggesting it participates in host-pathogen interactions in low temperature environments.

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