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◆ Fish & shellfish immunology2026-08-19

Characteristics and functions of a cell adhesion molecule PvCadN in Penaeus vannamei during WSSV infection.

Zixin Huang, Hong Shi, Zhongming Yang, Jianhui Liu, Lingwei Ruan

原始摘要(英文原文)· Original abstract
Cell adhesion not only maintains the integrity of the organism, but also plays an important role in the immune system, which serves as a critical gateway for pathogen invasion. In the study, a novel cell adhesion molecule from Penaeus vannamei, designated as PvCadN, was investigated. It had the typical molecular characteristics of cadherin family, with multiple extracellular cadherin repeat domains, a transmembrane region, and a conserved β-catenin-binding motif. pvcadn is expressed ubiquitously across all detected tissues, with the highest transcriptional level in gills. RNA interference-mediated silencing of pvcadn significantly impaired the adhesion ability of shrimp hemocytes. Upon WSSV infection, pvcadn showed a tissue-specific expression pattern, with upregulation in gills and downregulation in hemocytes. Knockdown of pvcadn markedly suppressed the transcription of WSSV immediate-early gene ie1 and replication of viral genome in vivo, suggesting that PvCadN functions as a proviral host factor. Furthermore, it was found that PvCadN was regulated by Lvβ-catenin, a core molecule in Wnt signaling pathway that functions in innate immunity, at the transcriptional and protein levels. Silencing of lvβ-catenin significantly downregulated pvcadn transcription, and Lvβ-catenin bound directly to the Cadherin C domain of PvCadN. In summary, the study revealed that PvCadN was a key cell adhesion molecule involved in WSSV infection, which was regulated by Lvβ-catenin. Our findings will provide fundamental data for further investigation into cadherin-mediated immune regulation in shrimp, and offer new insights for the prevention and control of WSSV.
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Characteristics and functions of a cell adhesion molecule PvCadN in Penaeus vannamei during WSSV infection. — 科研速览 Science Skim