多肽通过干扰病毒Vpu介导的系链蛋白降解抑制HIV-1复制

Shuai Chang , Lifeng Cai , Yongchang Yang , Binlian Sun , Jingyun Li , Jie Liu , Lin Li
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引用次数: 0

摘要

背景HIV-1Vpu通过对抗栓系蛋白的栓系功能而发挥作用,并导致HIV-1病毒粒子的释放。破坏Vpu-系链蛋白相互作用可能为抗逆转录病毒疗法提供一个有前景的新靶点。方法设计覆盖Vpu系链蛋白复合物界面氨基酸序列的多肽。测定了多肽的表型敏感性和细胞毒性。通过蛋白质印迹分析和激光共聚焦扫描确定了抗HIV-1多肽的作用机制。从野生型Vpu氨基酸序列中设计了7个20聚体多肽。结果我们报道了3种新的抗HIV-1多肽的设计和鉴定,这些多肽来源于Vpu序列,可以有效地抑制HIV-1感染。一项初步机制研究表明,该活性多肽可以对抗Vpu介导的系链蛋白下调。激光共聚焦图像扫描研究表明,多肽以受体特异性结合方式结合在细胞表面,可能靶向细胞表面表达的系链蛋白。结论我们的工作首次证明,对抗Vpu介导的栓系蛋白下调可能是新的抗HIV-1药物设计的靶点。未来的工作将提供抑制剂与系链蛋白在原子分辨率下相互作用的直接证据,开发靶向Vpu系链蛋白相互作用的小分子抑制剂可能为新型抗逆转录病毒疗法开辟一条新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polypeptides inhibit HIV-1 replication by interfering viral Vpu-mediated tetherin degradation

Background

HIV-1 Vpu acts by counteracting the tethering function of tetherin and resulting in the release of HIV-1 virion. Disrupting Vpu-tetherin interactions may provide a promising new target for antiretroviral therapy.

Methods

Polypeptides that covered the amino acid sequence on the interface of Vpu-tetherin complex were designed. Phenotypic susceptibilities and cellular toxicities to the polypeptides were measured. The mechanisms of the anti-HIV-1 polypeptides were determined by the Western blot analysis and laser confocal scanning. Seven 20-mer polypeptides from wild-type Vpu amino acid sequence were designed.

Results

We report the design and identification of 3 novel anti-HIV-1 polypeptides that derived from Vpu sequence which can efficiently inhibit HIV-1 infection. A pilot mechanism study showed that the active polypeptide could counteract Vpu-mediated tetherin downregulation. Laser confocal image scanning study showed that the polypeptides bound on the cell surface with a receptor specific binding manner, which may target tetherin that expressed on cell surface.

Conclusion

Our work provided first evidence that counteracting Vpu-mediated tetherin downregulation could be a target for novel anti-HIV-1 drug design. Future works to provide direct evidence of inhibitors interact with tetherin at atomic resolution and the development of small molecules inhibitors targeting Vpu-tetherin interactions may open a new avenue for novel antiretroviral therapy.

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