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The functionally exchangeable l domains in RSV and HIV-1 Gag direct particle release through pathways linked by Tsg101

机译:RSV和HIV-1 Gag中功能上可交换的l结构域通过Tsg101连接的途径直接释放颗粒

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The functionally exchangeable L domains of HIV-1 and Rous sarcoma virus (RSV) Gag bind Tsg101 and Nedd4, respectively. Tsg101 and Nedd4 function in endocytic trafficking, and studies show that expression of Tsg101 or Nedd4 fragments interfere with release of HIV-1 or RSV Gag, respectively, as virus-like particles (VLPs). To determine whether functional exchangeability reflects use of the same trafficking pathway, we tested the effect on RSV Gag release of co-expression with mutated forms of Vps4, Nedd4 and Tsg101. A dominant-negative mutant of Vps4A, an AAA ATPase required for utilization of endosomal sorting proteins that was shown previously to interfere with HIV-1 budding, also inhibited RSV Gag release, indicating that RSV uses the endocytic trafficking machinery, as does HIV. Nedd4 and Tsg101 interacted in the presence or absence of Gag and, through its binding of Nedd4, RSV Gag interacted with Tsg101. Deletion of the N-terminal region of Tsg101 or the HECT domain of Nedd4 did not prevent interaction; however, three-dimensional spatial imaging suggested that the interaction of RSV Gag with full-length Tsg101 and N-terminally truncated Tsg101 was not the same. Co-expression of RSV Gag with the Tsg101 C-terminal fragment interfered with VLP release minimally; however, a significant fraction of the released VLPs was tethered to each other. The results suggest that, while Tsg101 is not required for RSV VLP release, alterations in the protein interfere with VLP budding/fission events. We conclude that RSV and HIV-1 Gag direct particle release through independent ESCRT-mediated pathways that are linked through Tsg101-Nedd4 interaction.
机译:HIV-1和劳斯肉瘤病毒(RSV)Gag的功能可交换L结构域分别结合Tsg101和Nedd4。 Tsg101和Nedd4在胞吞运输中起作用,研究表明Tsg101或Nedd4片段的表达分别以病毒样颗粒(VLP)的形式干扰HIV-1或RSV Gag的释放。为了确定功能性可交换性是否反映了相同运输途径的使用,我们测试了突变形式的Vps4,Nedd4和Tsg101对RSV Gag共表达的影响。 Vps4A的显性负突变体(一种利用内体分选蛋白的必需AAA ATPase酶,先前已显示其干扰HIV-1出芽)也抑制了RSV Gag的释放,表明RSV和HIV一样都使用了内吞运输机制。 Nedd4和Tsg101在存在或不存在Gag的情况下相互作用,并且通过其与Nedd4的结合,RSV Gag与Tsg101相互作用。 Tsg101的N末端区域或Nedd4的HECT域的删除并不能阻止相互作用。但是,三维空间成像表明RSV Gag与全长Tsg101和N末端截短的Tsg101的相互作用不相同。 RSV Gag与Tsg101 C末端片段的共表达对VLP释放的干扰最小。但是,很大一部分已释放的VLP相互捆绑在一起。结果表明,尽管RSV VLP释放不需要Tsg101,但蛋白质的改变会干扰VLP的芽/裂变事件。我们得出的结论是,RSV和HIV-1 Gag通过独立的ESCRT介导的途径(通过Tsg101-Nedd4相互作用链接)直接释放颗粒。

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