HIV包膜gp120-Fc融合蛋白在恒河猴中引发效应抗体反应。

Q2 Biochemistry, Genetics and Molecular Biology
Clinical and Vaccine Immunology Pub Date : 2017-06-05 Print Date: 2017-06-01 DOI:10.1128/CVI.00028-17
Zhanna Shubin, Weizhong Li, Bhawna Poonia, Guido Ferrari, Celia LaBranche, David Montefiori, Xiaoping Zhu, C David Pauza
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引用次数: 7

摘要

艾滋病预防项目的一个目标是开发安全、有效的疫苗,产生持久和广泛的保护性抗体。许多疫苗项目关注对HIV包膜糖蛋白(Env) gp120部分关键表位的免疫应答,并试图通过改变gp120的序列、构象、寡聚化或糖基化来提高抗体的质量和数量,以激活适当的生殖系B细胞,并模仿感染个体随后的成熟途径。作为这些策略的补充,我们开发了二聚体融合蛋白免疫原,由附着在Gly/Ser连接体上的HIVBaL gp120单体组成,该连接体反过来融合到恒河猴IgG1 (Env-rFc)二聚体Fc结构域的一半。我们设想Env-rFc可能通过在免疫细胞上结合Fcγ受体(Fcγ rs)来模拟免疫复合物的某些方面,从而增加env特异性抗体反应的强度、广度和持久性。Env-rFc保留了结合细胞表面CD4和FcγRs的能力。在一项恒河猴免疫研究中,Env- rfc激发出比Env更高的gp120结合抗体滴度,并激发出识别cd4诱导表位的抗体。Env-rFc还诱导了能够中和1A级HIV假型病毒的抗体,并介导抗体依赖的细胞毒性,在我们的研究中,单分子gp120没有观察到这些结果。与Env单体免疫相比,Env- rfc免疫的猕猴血清抗体的耐久性提高。我们的研究表明,在env免疫原中添加IgG1 Fc可能会刺激免疫血清中效应能力的增加,并改善保护性血清抗体反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

An HIV Envelope gp120-Fc Fusion Protein Elicits Effector Antibody Responses in Rhesus Macaques.

An HIV Envelope gp120-Fc Fusion Protein Elicits Effector Antibody Responses in Rhesus Macaques.

An HIV Envelope gp120-Fc Fusion Protein Elicits Effector Antibody Responses in Rhesus Macaques.

A goal for HIV prevention programs is to develop safe, effective vaccines that elicit durable and broadly protective antibodies. Many vaccine programs focus on the immune responses to critical epitopes in the gp120 portion of HIV envelope glycoprotein (Env) and seek to improve the quality and quantity of antibodies by altering the sequence, conformation, oligomerization, or glycosylation of gp120 to activate appropriate germ line B cells and mimic the subsequent maturation pathways seen in infected individuals. As a complement to these strategies, we developed dimeric fusion protein immunogens consisting of HIVBaL gp120 monomer attached to a Gly/Ser linker that is, in turn, fused to one half of the dimeric Fc domain from rhesus macaque IgG1 (Env-rFc). We envisioned that Env-rFc may mimic some aspects of immune complexes by binding Fc gamma receptors (FcγRs) on immune cells to increase the strength, breadth, and durability of Env-specific antibody responses. The Env-rFc retained a capacity to bind both cell surface CD4 and FcγRs. In a rhesus macaque immunization study, Env-rFc elicited higher gp120 binding antibody titers than Env and elicited antibodies that recognize CD4-induced epitopes. Env-rFc also induced antibodies capable of neutralizing tier 1A HIV pseudotyped viruses and mediating antibody-dependent cellular cytotoxicity, outcomes not observed with monomeric gp120 in our study. Serum antibodies produced in Env-rFc-immunized macaques had increased durability compared to that of Env monomer immunization. Our work suggests that adding IgG1 Fc to Env-based immunogens may stimulate increased effector capacity in the immune sera and improve the protective serum antibody response.

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来源期刊
Clinical and Vaccine Immunology
Clinical and Vaccine Immunology 医学-传染病学
CiteScore
2.88
自引率
0.00%
发文量
0
审稿时长
1.5 months
期刊介绍: Cessation. First launched as Clinical and Diagnostic Laboratory Immunology (CDLI) in 1994, CVI published articles that enhanced the understanding of the immune response in health and disease and after vaccination by showcasing discoveries in clinical, laboratory, and vaccine immunology. CVI was committed to advancing all aspects of vaccine research and immunization, including discovery of new vaccine antigens and vaccine design, development and evaluation of vaccines in animal models and in humans, characterization of immune responses and mechanisms of vaccine action, controlled challenge studies to assess vaccine efficacy, study of vaccine vectors, adjuvants, and immunomodulators, immune correlates of protection, and clinical trials.
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