Wu Yanan, Sun Zhuoya, Xia Lu, Tian Panpan, Jiao Liuyang, Li Yanze, Wei Zhanyong, Wang Xuannian, Li Xiaoying, Zhang Gaiping
College of Veterinary Medicine, Henan Agricultural University, Zhengzhou, China.
International Joint Research Center of National Animal Immunology, College of Veterinary Medicine, Henan Agricultural University, Zhengzhou, China.
Front Immunol. 2025 May 8;16:1540159. doi: 10.3389/fimmu.2025.1540159. eCollection 2025.
Among various pathogens, viruses pose significant threats to the livestock and poultry industry, resulting in substantial annual costs due to production losses and vaccination. The MHC-I presentation pathway is a crucial surveillance mechanism for preventing viral infections. Consequently, many viruses have evolved sophisticated strategies to inhibit the presentation of viral peptides by MHC-I to CD8 T-cells, thereby evading the immune system. Understanding the mechanisms that suppress the MHC-I pathway and identifying specific binding peptides are essential for comprehending viral immune evasion and developing effective animal vaccines. This review summarizes the viral strategies for evading immune recognition, including the inhibition of MHC-I molecules synthesis, degradation, transport, and assembly, which affect MHC-I surface expression during viral infections. We also present evidence that MHC-I surface expression is frequently lost during numerous viral infections in livestock and poultry and offer new insights into the underlying mechanisms through which viruses inactivate the MHC-I antigen presentation pathway. Collectively, these advanced findings on viral evasion from the MHC-I pathway could inform the development of more effectives strategies to restore immunological control over viral infections and improve vaccines for the livestock and poultry industry.
在各种病原体中,病毒对畜禽产业构成重大威胁,因生产损失和疫苗接种导致每年产生巨额成本。MHC-I 呈递途径是预防病毒感染的关键监测机制。因此,许多病毒已经进化出复杂的策略来抑制 MHC-I 将病毒肽呈递给 CD8 T 细胞,从而逃避免疫系统。了解抑制 MHC-I 途径的机制并鉴定特定的结合肽对于理解病毒免疫逃逸和开发有效的动物疫苗至关重要。本综述总结了病毒逃避免疫识别的策略,包括抑制 MHC-I 分子的合成、降解、运输和组装,这些都会影响病毒感染期间 MHC-I 的表面表达。我们还提供证据表明,在畜禽的多种病毒感染过程中,MHC-I 的表面表达经常丧失,并对病毒使 MHC-I 抗原呈递途径失活的潜在机制提供了新的见解。总的来说,这些关于病毒从 MHC-I 途径逃逸的前沿发现可为制定更有效的策略提供参考,以恢复对病毒感染的免疫控制并改进畜禽产业的疫苗。