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双特异性抗体 CAP256.J3LS 以高广度和效力靶向 V2-顶点和 CD4 结合位点。

Bispecific antibody CAP256.J3LS targets V2-apex and CD4-binding sites with high breadth and potency.

机构信息

Vaccine Research Center, NIAID, National Institutes of Health, Bethesda, MD, USA.

Department of Biology, Johns Hopkins University, Baltimore, MD, USA.

出版信息

MAbs. 2023 Jan-Dec;15(1):2165390. doi: 10.1080/19420862.2023.2165390.

Abstract

Antibody CAP256-VRC26.25 targets the second hypervariable region (V2) at the apex of the HIV envelope (Env) trimer with extraordinary neutralization potency, although less than optimal breadth. To improve breadth, we linked the light chain of CAP256V2LS, an optimized version of CAP256-VRC26.25 currently under clinical evaluation, to the llama nanobody J3, which has broad CD4-binding site-directed neutralization. The J3-linked bispecific antibody exhibited improved breadth and potency over both J3 and CAP256V2LS, indicative of synergistic neutralization. The cryo-EM structure of the bispecific antibody in complex with a prefusion-closed Env trimer revealed simultaneous binding of J3 and CAP256V2LS. We further optimized the pharmacokinetics of the bispecific antibody by reducing the net positive charge of J3. The optimized bispecific antibody, which we named CAP256.J3LS, had a half-life similar to CAP256V2LS in human FcRn knock-in mice and exhibited suitable auto-reactivity, manufacturability, and biophysical risk. CAP256.J3LS neutralized over 97% of a multiclade 208-strain panel (geometric mean concentration for 80% inhibition (IC) 0.079 μg/ml) and 100% of a 100-virus clade C panel (geometric mean IC of 0.05 μg/ml), suggesting its anti-HIV utility especially in regions where clade C dominates.

摘要

抗体 CAP256-VRC26.25 以极高的中和效力靶向 HIV 包膜 (Env) 三聚体的顶点的第二个高变区 (V2),尽管广度不够理想。为了提高广度,我们将 CAP256-VRC26.25 的轻链与骆驼科纳米抗体 J3 相连,J3 具有广泛的 CD4 结合位点定向中和作用。J3 连接的双特异性抗体在广度和效力上均优于 J3 和 CAP256V2LS,表明存在协同中和作用。该双特异性抗体与预融合封闭 Env 三聚体复合物的低温电子显微镜结构揭示了 J3 和 CAP256V2LS 的同时结合。我们通过降低 J3 的净正电荷进一步优化了双特异性抗体的药代动力学。我们将这种优化后的双特异性抗体命名为 CAP256.J3LS,它在人 FcRn 敲入小鼠中的半衰期与 CAP256V2LS 相似,并且表现出适当的自身反应性、可制造性和生物物理风险。CAP256.J3LS 中和了超过 97%的多谱系 208 株组(80%抑制的几何平均浓度 (IC) 0.079μg/ml)和 100%的 100 种病毒 C 谱系组(几何平均 IC 为 0.05μg/ml),表明其在 HIV 防治方面具有潜力,特别是在 C 谱系占主导地位的地区。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bb5/9897750/c65406ce767d/KMAB_A_2165390_F0001_OC.jpg

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