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Author

Zihao Zhang

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Jul 2026

Scallop Toll-like Receptor Engages in Complex Interactions with Diverse MyD88 Proteins and Orchestrates Host Innate Immune Responses.

Toll-like receptor (TLR) family proteins act as pattern recognition receptors with pivotal roles in immune defense; however, the function of TLRs in marine mollusks requires further investigation. In this study, we identified a novel TLR gene (CfTLR-Like-1 [CfTLR-L1]) in Chlamys farreri and analyzed its immune functions. CfTLR-L1 has a coding sequence of 1,785 bp and encodes 594 amino acids. It includes typical protein domains; the amino acid sequences of the protein domains are conserved. Phylogenetic analyses demonstrated a close evolutionary relationship among proteins in the mollusk TLR subfamily. CfTLR-L1 is predominantly located on the cell membrane. CfTLR-L1 mRNA is expressed in all tissues, particularly in the hepatopancreas and mantle. Pathogenic stressors, including lipopolysaccharide, peptidoglycan, polyinosinic-polycytidylic acid, Vibrio anguillarum, Vibrio alginolyticus, Vibrio splendidus, and acute viral necrosis virus, significantly increase the levels of CfTLR-L1 mRNA transcripts. The Toll/interleukin 1 receptor (TIR) domain of CfTLR-L1 interacts with the MyD88 family proteins of scallops (including CfMyD88-1, CfMyD88-3, and CfMyD88-4), implying that multiple unique TLR signal transduction mechanisms exist in marine mollusks. CfTLR-L1-TIR interacts with CfMyD88-1-P3, which contains only the TIR structural domain. Overexpression of CfTLR-L1-TIR in HEK293T cells activated reporter genes, including IFNβ, IFNγ, and STAT3. Similarly, overexpression of CfTLR-L1 significantly affected mitogen-activated protein kinase phosphorylation, specifically of p38 and c-Jun N-terminal kinase. Our findings expand the knowledge of the role of TLR in mollusk immunity and may provide evidence for selecting disease-resistant scallops for cultivation.

Jilv Ma, Fengchen Liu, Zihao Zhang et al. · 0 citations
Jul 2026

Newly identified TRAF7 interacts with TAK1 and regulates immune response in Chlamys farreri.

This study provides a new perspective for understanding the evolutionary conservation and species specificity of molluscan innate immune signaling pathways and offers important theoretical support for further comprehension of the molecular mechanism of scallop immune defense and promoting the green control of aquatic diseases in marine farming.

Xiaoxue Lin, Zihao Zhang, Xiaolong Chu et al. · 0 citations