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Tingting He

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Jul 2026

Molecular characterization, microbial recognition and immunomodulatory functions of a novel ladderlectin-like lectin (HoLL-like) from Hexagrammos otakii.

Ladderlectin, a member of the C-type lectin (CTL) family, has historically been identified only in fish and shrimp, where it is primarily involved in innate immune defense. In teleosts, ladderlectin plays a crucial dual role in both innate immunity against pathogens and reproductive regulation. However, the molecular characterization and immunomodulatory functions of ladderlectin homolog (ladderlectin-like) in Hexagrammos otakii remain poorly understood. In this study, a novel ladderlectin-like gene (HoLL-like) was identified and cloned from Hexagrammos otakii based on genomic data. Sequence analysis and domain prediction revealed that HoLL-like contains a 534-bp open reading frame encoding a 177-aa polypeptide, with an N-terminal signal peptide and a single C-type lectin-like domain (CTLD). The CTLD retains the WSD, WND, and WIGG motifs and is rich in cysteine residues. Phylogenetic analysis showed that HoLL-like forms a distinct, relatively independent clade within the teleost ladderlectin-like family. Quantitative RT-PCR analysis demonstrated that Holl-like is expressed in multiple tissues, with the highest transcript levels in the liver. Besides, it exhibited a time-dependent transcriptional response in the liver, spleen, skin, intestine, and kidney following Vibrio harveyi infection. After heterologous expression, purification, and refolding, the recombinant protein rHoLL-like displayed characteristic ladder-like oligomeric bands in immunoblotting. Functional assays revealed that rHoLL-like binds and agglutinates multiple Gram-positive and Gram-negative bacteria in a Ca2+-independent manner and binds pathogen-associated molecular patterns (PAMPs), including lipopolysaccharide (LPS), peptidoglycan (PGN), and poly(I:C) in a dose-dependent manner, showing higher affinity for LPS. Further analyses indicated that rHoLL-like did not directly agglutinate or lyse erythrocytes, but enhanced serum hemolytic and bactericidal activities under Ca2+-containing conditions. These effects were sensitive to EDTA and serum heat inactivation, suggesting that rHoLL-like may modulate heat-labile, Ca2+-dependent serum effector mechanisms, potentially associated with complement activity. Collectively, these findings suggest that HoLL-like plays a crucial role in the innate immune response of H. otakii against bacterial and other pathogen infections. This study expands our understanding of the functional repertoire of teleost ladderlectin-like proteins and provides new insights into the molecular strategies to prevent and control bacterial diseases in marine aquaculture, as well as for the development of immunoactive agents.

Yuyoumin Wen, Xu Wei, Tingting He et al. · 0 citations