HIV-1 uses the microtubule cytoskeleton to reach the host cell nucleus during replication, yet the molecular basis for microtubule-dependent HIV-1 motility is poorly understood. Using in vitro reconstitution biochemistry and single-molecule imaging, we found that HIV-1 binds to the retrograde microtubule-associated motor, dynein, directly and not via a cargo adaptor, as has been previously suggested. The HIV-1 capsid lattice binds to accessory chains on dynein's tail domain. Further, we demonstrate that multiple dynein motors tethered to rigid cargoes, such as HIV-1 capsids, display reduced motility, distinct from the behavior of multiple motors on membranous cargoes. Our results provide an updated model of HIV-1 trafficking wherein HIV-1 binds to dynein directly to "hijack" the dynein transport machinery for microtubule motility.
HIV-1 binds dynein directly to hijack microtubule transport machinery.
HIV-1 直接与动力蛋白结合,劫持微管运输机制
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作者:Badieyan Somayesadat, Lichon Drew, Keceli Sevnur Komurlu, Andreas Michael P, Gillies John P, Peng Wang, Shi Jiong, DeSantis Morgan E, Aiken Christopher R, Böcking Till, Giessen Tobias W, Campbell Edward M, Cianfrocco Michael A
| 期刊: | Science Advances | 影响因子: | 12.500 |
| 时间: | 2025 | 起止号: | 2025 Jun 20; 11(25):eadn6796 |
| doi: | 10.1126/sciadv.adn6796 | 研究方向: | 其它 |
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