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六邻体嵌合5型腺病毒载体可规避预先存在的抗载体免疫。

Hexon-chimaeric adenovirus serotype 5 vectors circumvent pre-existing anti-vector immunity.

作者信息

Roberts Diane M, Nanda Anjali, Havenga Menzo J E, Abbink Peter, Lynch Diana M, Ewald Bonnie A, Liu Jinyan, Thorner Anna R, Swanson Patricia E, Gorgone Darci A, Lifton Michelle A, Lemckert Angelique A C, Holterman Lennart, Chen Bing, Dilraj Athmanundh, Carville Angela, Mansfield Keith G, Goudsmit Jaap, Barouch Dan H

机构信息

Division of Viral Pathogenesis, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts 02215, USA.

出版信息

Nature. 2006 May 11;441(7090):239-43. doi: 10.1038/nature04721. Epub 2006 Apr 16.

Abstract

A common viral immune evasion strategy involves mutating viral surface proteins in order to evade host neutralizing antibodies. Such immune evasion tactics have not previously been intentionally applied to the development of novel viral gene delivery vectors that overcome the critical problem of anti-vector immunity. Recombinant, replication-incompetent adenovirus serotype 5 (rAd5) vector-based vaccines for human immunodeficiency virus type 1 and other pathogens have proved highly immunogenic in preclinical studies but will probably be limited by the high prevalence of pre-existing anti-Ad5 immunity in human populations, particularly in the developing world. Here we show that rAd5 vectors can be engineered to circumvent anti-Ad5 immunity. We constructed novel chimaeric rAd5 vectors in which the seven short hypervariable regions (HVRs) on the surface of the Ad5 hexon protein were replaced with the corresponding HVRs from the rare adenovirus serotype Ad48. These HVR-chimaeric rAd5 vectors were produced at high titres and were stable through serial passages in vitro. HVR-chimaeric rAd5 vectors expressing simian immunodeficiency virus Gag proved comparably immunogenic to parental rAd5 vectors in naive mice and rhesus monkeys. In the presence of high levels of pre-existing anti-Ad5 immunity, the immunogenicity of HVR-chimaeric rAd5 vectors was not detectably suppressed, whereas the immunogenicity of parental rAd5 vectors was abrogated. These data demonstrate that functionally relevant Ad5-specific neutralizing antibodies are focused on epitopes located within the hexon HVRs. Moreover, these studies show that recombinant viral vectors can be engineered to circumvent pre-existing anti-vector immunity by removing key neutralizing epitopes on the surface of viral capsid proteins. Such chimaeric viral vectors may have important practical implications for vaccination and gene therapy.

摘要

一种常见的病毒免疫逃逸策略是使病毒表面蛋白发生突变,以逃避宿主中和抗体。此前,这种免疫逃逸策略尚未被有意应用于新型病毒基因递送载体的开发,这类载体旨在克服抗载体免疫这一关键问题。基于重组、无复制能力的5型腺病毒(rAd5)载体的针对1型人类免疫缺陷病毒及其他病原体的疫苗,在临床前研究中已证明具有高度免疫原性,但可能会受到人群中尤其是发展中世界中预先存在的抗Ad5免疫高流行率的限制。在此,我们表明可以对rAd5载体进行改造以规避抗Ad5免疫。我们构建了新型嵌合rAd5载体,其中Ad5六邻体蛋白表面的七个短高变区(HVRs)被罕见腺病毒血清型Ad48的相应HVRs所取代。这些HVR嵌合rAd5载体能够高滴度产生,并且在体外连续传代过程中保持稳定。在新生小鼠和恒河猴中,表达猿猴免疫缺陷病毒Gag的HVR嵌合rAd5载体与亲本rAd5载体相比,免疫原性相当。在预先存在高水平抗Ad5免疫的情况下,HVR嵌合rAd5载体的免疫原性未被检测到受到抑制,而亲本rAd5载体的免疫原性则被消除。这些数据表明,功能相关的Ad5特异性中和抗体集中在位于六邻体HVRs内的表位上。此外,这些研究表明,可以通过去除病毒衣壳蛋白表面关键的中和表位,对重组病毒载体进行改造以规避预先存在的抗载体免疫。这类嵌合病毒载体可能对疫苗接种和基因治疗具有重要的实际意义。

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