Beyond RNAi: How the Dicer protein modulates the antiviral innate immune response in mammalian cells: Mammalian Dicer could regulate the innate immune response in an RNAi-independent manner as a result of losing long dsRNA processive activity.

IF 3.2 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
BioEssays Pub Date : 2024-09-09 DOI:10.1002/bies.202400173
Léa Gaucherand, Morgane Baldaccini, Sébastien Pfeffer
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引用次数: 0

Abstract

While Dicer plays an important antiviral role through the RNAi pathway in plants and invertebrates, its contribution to antiviral immunity in vertebrates and more specifically mammals is more controversial. The apparent limited RNAi activity in mammalian cells has been attributed to the reduced long dsRNA processive activity of mammalian Dicer, as well as a functional incompatibility between the RNAi and IFN pathways. Why Dicer has lost this antiviral activity in the profit of the IFN pathway is still unclear. We propose that the primary direct antiviral activity of Dicer has been functionally replaced by other sensors in the IFN pathway, leading to its specialization toward microRNA maturation. As a result, Dicer can regulate the innate immune response and prevent basal activation of the IFN pathway in mammals. Here, we discuss this hypothesis, highlighting how the adaptation of the helicase domain of mammalian Dicer may be key to this process.

Abstract Image

超越 RNAi:Dicer 蛋白如何调节哺乳动物细胞的抗病毒先天免疫反应:哺乳动物的 Dicer 由于失去了长 dsRNA 的加工活性,因此可以不依赖 RNAi 的方式调节先天性免疫反应。
虽然 Dicer 通过 RNAi 途径在植物和无脊椎动物中发挥着重要的抗病毒作用,但它对脊椎动物,特别是哺乳动物抗病毒免疫的贡献却存在更多争议。哺乳动物细胞中明显有限的 RNAi 活性被归因于哺乳动物 Dicer 的长 dsRNA 处理活性降低,以及 RNAi 和 IFN 途径之间的功能不相容。目前还不清楚为什么 Dicer 在 IFN 途径获利的情况下失去了这种抗病毒活性。我们认为,Dicer 的主要直接抗病毒活性在功能上已被 IFN 途径中的其他传感器所取代,导致其专门用于 microRNA 的成熟。因此,Dicer 可以调节先天性免疫反应,阻止哺乳动物 IFN 通路的基础激活。在这里,我们讨论了这一假设,强调了哺乳动物 Dicer 螺旋酶结构域的适应可能是这一过程的关键。
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来源期刊
BioEssays
BioEssays 生物-生化与分子生物学
CiteScore
7.30
自引率
2.50%
发文量
167
审稿时长
4-8 weeks
期刊介绍: molecular – cellular – biomedical – physiology – translational research – systems - hypotheses encouraged BioEssays is a peer-reviewed, review-and-discussion journal. Our aims are to publish novel insights, forward-looking reviews and commentaries in contemporary biology with a molecular, genetic, cellular, or physiological dimension, and serve as a discussion forum for new ideas in these areas. An additional goal is to encourage transdisciplinarity and integrative biology in the context of organismal studies, systems approaches, through to ecosystems, where appropriate.
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