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水泡性口炎病毒G的茎部可以被HIV-1包膜膜近端外部区域取代,而不会丧失G功能或膜近端外部区域的抗原特性。

The stem of vesicular stomatitis virus G can be replaced with the HIV-1 Env membrane-proximal external region without loss of G function or membrane-proximal external region antigenic properties.

作者信息

Lorenz Ivo C, Nguyen Hanh T, Kemelman Marina, Lindsay Ross W, Yuan Maoli, Wright Kevin J, Arendt Heather, Back Jaap Willem, DeStefano Joanne, Hoffenberg Simon, Morrow Gavin, Jurgens Christy K, Phogat Sanjay K, Zamb Timothy J, Parks Christopher L

机构信息

1 The International AIDS Vaccine Initiative, AIDS Vaccine Design and Development Laboratory , Brooklyn, New York.

出版信息

AIDS Res Hum Retroviruses. 2014 Nov;30(11):1130-44. doi: 10.1089/AID.2013.0206. Epub 2014 Apr 9.

Abstract

The structure of the HIV-1 envelope membrane-proximal external region (MPER) is influenced by its association with the lipid bilayer on the surface of virus particles and infected cells. To develop a replicating vaccine vector displaying MPER sequences in association with membrane, Env epitopes recognized by the broadly neutralizing antibodies 2F5, 4E10, or both were grafted into the membrane-proximal stem region of the vesicular stomatitis virus (VSV) glycoprotein (G). VSV encoding functional G-MPER chimeras based on G from the Indiana or New Jersey serotype propagated efficiently, although grafting of both epitopes (G-2F5-4E10) modestly reduced replication and resulted in the acquisition of one to two adaptive mutations in the grafted MPER sequence. Monoclonal antibodies 2F5 and 4E10 efficiently neutralized VSV G-MPER vectors and bound to virus particles in solution, indicating that the epitopes were accessible in the preattachment form of the G-MPER chimeras. Overall, our results showed that the HIV Env MPER could functionally substitute for the VSV G-stem region implying that both perform similar functions even though they are from unrelated viruses. Furthermore, we found that the MPER sequence grafts induced low but detectable MPER-specific antibody responses in rabbits vaccinated with live VSV, although additional vector and immunogen modifications or use of a heterologous prime-boost vaccination regimen will be required to increase the magnitude of the immune response.

摘要

HIV-1包膜膜近端外部区域(MPER)的结构受其与病毒颗粒和受感染细胞表面脂质双层结合的影响。为了开发一种能展示与膜结合的MPER序列的复制性疫苗载体,将广谱中和抗体2F5、4E10识别的Env表位或两者都移植到水疱性口炎病毒(VSV)糖蛋白(G)的膜近端茎区。编码基于印第安纳或新泽西血清型G的功能性G-MPER嵌合体的VSV能高效繁殖,尽管两个表位(G-2F5-4E10)的移植适度降低了复制,并导致在移植的MPER序列中获得一到两个适应性突变。单克隆抗体2F5和4E10能有效中和VSV G-MPER载体,并与溶液中的病毒颗粒结合,表明这些表位在G-MPER嵌合体的预附着形式中是可及的。总体而言,我们的结果表明HIV Env MPER可以在功能上替代VSV G茎区,这意味着尽管它们来自不相关的病毒,但两者执行相似的功能。此外,我们发现,在用活VSV免疫的兔子中,MPER序列移植诱导了低水平但可检测到的MPER特异性抗体反应,不过需要额外的载体和免疫原修饰或使用异源初免-加强免疫方案来增强免疫反应的强度。

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