Poxvirus Host-Range Determinants: SAMD9/9L and Beyond.

IF 8.1 1区 医学 Q1 VIROLOGY
Yan Xiang
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引用次数: 0

Abstract

The recent global spread of mpox virus, facilitated by a newly established human-to-human transmission mode, has rekindled interest in poxviruses and the molecular factors defining their host range. Poxviruses employ host-range factors, a subset of their immune evasion proteins, to overcome cell-intrinsic defenses in specific cell types or host species. Over the past decade, investigations of these factors have revealed previously unrecognized antiviral mechanisms and expanded our understanding of innate immunity. Among the key developments are the discovery of novel restriction factors, including SAMD9 and SAMD9L (SAMD9/9L), and expanded roles for established antiviral proteins such as IFITs, FAM111A, and ZAP. These advances not only clarify how poxvirus host range is determined but also offer valuable insights into the complexity and evolution of mammalian innate immunity. Here, I highlight new findings on poxvirus host-range determinants, with a particular focus on SAMD9/9L and the three distinct classes of poxvirus host-range factors that antagonize them.

痘病毒宿主范围决定因子:SAMD9/9L及其他。
由于新建立的人传人模式,最近痘病毒在全球传播,重新引起了人们对痘病毒和确定其宿主范围的分子因素的兴趣。痘病毒利用宿主范围因子(其免疫逃避蛋白的一个子集)来克服特定细胞类型或宿主物种的细胞内在防御。在过去的十年中,对这些因素的研究揭示了以前未被认识到的抗病毒机制,并扩大了我们对先天免疫的理解。其中的关键进展是发现了新的限制性因子,包括SAMD9和SAMD9L (SAMD9/ 9l),并扩大了已建立的抗病毒蛋白如IFITs、FAM111A和ZAP的作用。这些进展不仅阐明了痘病毒宿主范围是如何确定的,而且对哺乳动物先天免疫的复杂性和进化提供了有价值的见解。在这里,我重点介绍了痘病毒宿主范围决定因素的新发现,特别关注SAMD9/9L和三种不同类型的痘病毒宿主范围因子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
19.40
自引率
0.90%
发文量
28
期刊介绍: The Annual Review of Virology serves as a conduit for disseminating thrilling advancements in our comprehension of viruses spanning animals, plants, bacteria, archaea, fungi, and protozoa. Its reviews illuminate novel concepts and trajectories in basic virology, elucidating viral disease mechanisms, exploring virus-host interactions, and scrutinizing cellular and immune responses to virus infection. These reviews underscore the exceptional capacity of viruses as potent probes for investigating cellular function.
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