Actin- and microtubule-based transport systems are essential for the trafficking of endocytic viruses and cargoes. Microtubules facilitate long-distance transport; however, the precise role of actin dynamics and its regulators during virus entry, particularly in the transit process, remains elusive. Here, Adducin-1 (ADD1) is identified as a key regulator of actin dynamics, as demonstrated by real-time monitoring of quantum dot (QD)-labeled influenza A virus (IAV) movement. ADD1 deletion increases actin density around endocytic vesicles, disrupting general vesicular trafficking and inhibiting the replication of diverse endocytic viruses. Mechanistically, endocytic viruses or cargoes trigger the phosphorylation of ADD1 at Ser726, which reduces the density of actin branches for effective transport. Additionally, the physical force required for IAV capsid dissociation is influenced by ADD1. Collectively, the study identifies a basic actin dynamics event with broad relevance to endocytic viruses or cargo trafficking and represents ADD1 as a potential target for developing broad-spectrum antiviral strategies.
Adducin-1 Facilitates Influenza Virus Endosomal Trafficking and Uncoating by Regulating Branched Actin Dynamics and Myosin IIB Activity.
Adducin-1 通过调节分支肌动蛋白动力学和肌球蛋白 IIB 活性来促进流感病毒内体运输和脱壳
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作者:Jiang Meijun, Zou Jiahui, Jin Yaoming, Jiang Chenjun, Tu Shaoyu, Chen Tong, Guo Jinli, Cheng Yanqing, Jin Meilin, Chen Huanchun, Zhou Hongbo
| 期刊: | Advanced Science | 影响因子: | 14.100 |
| 时间: | 2025 | 起止号: | 2025 Jul;12(28):e2417318 |
| doi: | 10.1002/advs.202417318 | 研究方向: | 炎症/感染 |
| 疾病类型: | 流感 | ||
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