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A Panel of IgG1 b12 Variants with Selectively Diminished or Enhanced Affinity for Fcγ Receptors To Define the Role of Effector Functions in Protection against HIV ▿

机译:一组选择性降低或增强对Fcγ受体亲和力的IgG1 b12变体,以定义效应子功能在预防HIV中的作用 ▿

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摘要

Passive transfer of neutralizing antibodies is effective in protecting rhesus macaques against simian/human immunodeficiency virus (SHIV) challenge. In addition to neutralization, effector functions of the crystallizable fragment (Fc) of antibodies are involved in antibody-mediated protection against a number of viruses. We recently showed that interaction between the Fc fragment of the broadly neutralizing antibody IgG1 b12 and cellular Fcγ receptors (FcγRs) plays an important role in protection against SHIV infection in rhesus macaques. The specific nature of this Fc-dependent protection is largely unknown. To investigate, we generated a panel of 11 IgG1 b12 antibody variants with selectively diminished or enhanced affinity for the two main activating FcγRs, FcγRIIa and FcγRIIIa. All 11 antibody variants bind gp120 and neutralize virus as effectively as does wild-type b12. Binding studies using monomeric (enzyme-linked immunosorbent assay [ELISA] and surface plasmon resonance [SPR]) and cellularly expressed Fcγ receptors show decreased (up to 5-fold) and increased (up to 90-fold) binding to FcγRIIa and FcγRIIIa with this newly generated panel of antibodies. In addition, there was generally a good correlation between b12 variant affinity for Fcγ receptor and variant function in antibody-dependent cell-mediated virus inhibition (ADCVI), phagocytosis, NK cell activation assays, and antibody-dependent cellular cytotoxicity (ADCC) assays. In future studies, these b12 variants will enable the investigation of the protective role of individual FcγRs in HIV infection.
机译:中和抗体的被动转移可有效保护猕猴抵御猿猴/人类免疫缺陷病毒(SHIV)攻击。除中和作用外,抗体可结晶片段(Fc)的效应子功能还涉及抗体介导的针对多种病毒的保护作用。我们最近发现,广泛中和抗体IgG1 b12的Fc片段与细胞Fcγ受体(FcγRs)之间的相互作用在保护猕猴猕猴中的SHIV感染中起着重要作用。 Fc依赖性保护的特异性本质在很大程度上是未知的。为了进行调查,我们生成了一组11个IgG1 b12抗体变异体,它们对两种主要的活化FcγR,FcγRIIa和FcγRIIIa的亲和力选择性降低或增强。所有11种抗体变体均与野生型b12一样有效地结合gp120和中和病毒。使用单体(酶联免疫吸附测定[ELISA]和表面等离振子共振[SPR])和细胞表达的Fcγ受体的结合研究显示,与FcγRIIa和FcγRIIIa的结合减少(最多5倍)和增加(最多90倍)。这个新生成的抗体组。此外,在抗体依赖性细胞介导的病毒抑制(ADCVI),吞噬作用,NK细胞活化测定和抗体依赖性细胞毒性(ADCC)测定中,b12对Fcγ受体的亲和力与变体功能之间通常存在良好的相关性。在未来的研究中,这些b12变体将能够研究单个FcγR在HIV感染中的保护作用。

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