Melanomacrophages exhibit FDC-like features: aquatic reovirus induces melanomacrophage death to suppress antibody responses

Genotype II grass carp reovirus (GCRV-II)-caused grass carp hemorrhagic disease severely restricts aquaculture, yet its adaptive immune evasion mechanism remains unclear. In mammals, follicular dendritic cells (FDCs) act as the core antigen-presenting cells that drive germinal center (GC)-mediated antibody responses; however, the core antigen-presenting cells within teleost GC-like structures are undefined, and whether aquatic viruses target these cells to evade host antibody responses remains elusive. Here, we confirmed the presence of functional GC-like structures in immunized grass carp spleen and identified melanomacrophages (MMφs) as FDC-like cells that capture and present intact antigens. Importantly, GCRV-II infection significantly impaired GC-like structure formation and suppressed antibody responses. Mechanistically, GCRV-II infects grass carp MMφs, inducing coordinated apoptosis and gasdermin Ea/gasdermin Eb (GSDMEa/GSDMEb)-dependent pyroptosis. This process promoted GCRV-II replication and dissemination, depleted MMφ populations, and ultimately prevented GC-like structure formation. This study clarifies the cellular composition of GC-like structures in ectothermic vertebrates, unveils an unreported aquatic viral immune evasion strategy, and provides key targets for the rational design of teleost vaccines.

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Publication Details

Journal
Cell Communication and Signaling
Published
2026-09-21
DOI
https://doi.org/10.1186/s12964-026-03232-0
Primary Topic
Autophagy in Disease and Therapy
Type
article
Field-Weighted Citation Impact
0.00

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article

Melanomacrophages exhibit FDC-like features: aquatic reovirus induces melanomacrophage death to suppress antibody responses

Xu‐Jie Zhang, Chen-xi Pan, Haohao Chen, Jianmin Ye et al.
Cell Communication and Signaling
Autophagy in Disease and Therapy
article

Melanomacrophages exhibit FDC-like features: aquatic reovirus induces melanomacrophage death to suppress antibody responses

Xu‐Jie Zhang, Chen-xi Pan, Haohao Chen, Jianmin Ye, Jing‐Yi Zhuang, Yong-An Zhang, Wen-Jing Dong, Ze-Qing Li, Nan Zhang, Zhi-Xing Wang, Xun Liu
article en

Abstract

Genotype II grass carp reovirus (GCRV-II)-caused grass carp hemorrhagic disease severely restricts aquaculture, yet its adaptive immune evasion mechanism remains unclear. In mammals, follicular dendritic cells (FDCs) act as the core antigen-presenting cells that drive germinal center (GC)-mediated antibody responses; however, the core antigen-presenting cells within teleost GC-like structures are undefined, and whether aquatic viruses target these cells to evade host antibody responses remains elusive. Here, we confirmed the presence of functional GC-like structures in immunized grass carp spleen and identified melanomacrophages (MMφs) as FDC-like cells that capture and present intact antigens. Importantly, GCRV-II infection significantly impaired GC-like structure formation and suppressed antibody responses. Mechanistically, GCRV-II infects grass carp MMφs, inducing coordinated apoptosis and gasdermin Ea/gasdermin Eb (GSDMEa/GSDMEb)-dependent pyroptosis. This process promoted GCRV-II replication and dissemination, depleted MMφ populations, and ultimately prevented GC-like structure formation. This study clarifies the cellular composition of GC-like structures in ectothermic vertebrates, unveils an unreported aquatic viral immune evasion strategy, and provides key targets for the rational design of teleost vaccines.

Cell Communication and Signaling
South China Normal University (CN), Huazhong Agricultural University (CN), Agricultural Genomics Institute at Shenzhen (CN), Chinese Academy of Agricultural Sciences (CN)
National Natural Science Foundation of China, Natural Science Foundation of Hubei Province, National Key Research and Development Program of China
Life below water
Openalex Percentile: Top 11%
Autophagy in Disease and Therapy
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