A comprehensive engineering strategy improves potency and manufacturability of a near pan-neutralizing antibody against HIV.

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作者:Sajadi Mohammad M, Abbasi Abdolrahim, Tehrani Zahra Rikhtegaran, Siska Christine, Clark Rutilio, Chi Woo, Seaman Michael S, Mielke Dieter, Wagh Kshitij, Liu Qingbo, Jumpa Taylor, Ketchem Randal R, Nguyen Dung N, Tolbert William D, Pierce Brian G, Atkinson Ben, Deming Derrick, Sprague Megan, Asakawa Andrew, Ferrer David, Dunn Yasmin, Calvillo Sarah, Yin Rui, Guest Johnathan D, Korber Bette, Mayer Bryan T, Sato Alicia H, Ouyang Xin, Foulke Scott, Habibzadeh Parham, Karimi Maryam, Aslanabadi Arash, Hojabri Mahsa, Saadat Saman, Zareidoodeji Roza, Kędzior Mateusz, Pozharski Edwin, Heredia Alonso, Chen Hegang, Montefiori David, Ferrari Guido, Pazgier Marzena, Lewis George K, Jardine Joseph G, Lusso Paolo, DeVico Anthony
Anti-HIV envelope broadly neutralizing antibodies (bnAbs) are alternatives to conventional antiretrovirals with the potential to prevent and treat infection, reduce latent reservoirs, and/or mediate a functional cure. Clinical trials with "first-generation" bnAbs used alone or in combination show promising antiviral effects but also highlight that additional engineering of "enhanced" antibodies will be required for optimal clinical utility, while preserving or enhancing Current Good Manufacturing Practices (cGMP) manufacturing capability. Here, we report the engineering of an anti-CD4-binding site (CD4bs) bnAb, N49P9.3. Through a series of rational modifications, we produced a variant, N49P9.6-FR-LS, that demonstrates enhanced potency, superior antiviral activity in combination with other bnAbs, low polyreactivity, and longer circulating half-life. Additional engineering for manufacturing produced a final variant, eN49P9, with properties conducive to cGMP production. Overall, these efforts demonstrate the feasibility of developing enhanced anti-CD4bs bnAbs with greatly improved antiviral properties as well as potential translational value.

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