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Effector-attenuating Substitutions That Maintain Antibody Stability and Reduce Toxicity in Mice

机译:维持抗体稳定性并降低小鼠毒性的效应子减弱替代物

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摘要

The antibody Fc region regulates antibody cytotoxic activities and serum half-life. In a therapeutic context, however, the cytotoxic effector function of an antibody is often not desirable and can create safety liabilities by activating native host immune defenses against cells expressing the receptor antigens. Several amino acid changes in the Fc region have been reported to silence or reduce the effector function of antibodies. These earlier studies focused primarily on the interaction of human antibodies with human Fc-γ receptors, and it remains largely unknown how such changes to Fc might translate to the context of a murine antibody. We demonstrate that the commonly used N297G (NG) and D265A, N297G (DANG) variants that are efficacious in attenuating effector function in primates retain potent complement activation capacity in mice, leading to safety liabilities in murine studies. In contrast, we found an L234A, L235A, P329G (LALA-PG) variant that eliminates complement binding and fixation as well as Fc-γ-dependent, antibody-dependent, cell-mediated cytotoxity in both murine IgG2a and human IgG1. These LALA-PG substitutions allow a more accurate translation of results generated with an “effectorless” antibody between mice and primates. Further, we show that both human and murine antibodies containing the LALA-PG variant have typical pharmacokinetics in rodents and retain thermostability, enabling efficient knobs-into-holes bispecific antibody production and a robust path to generating highly effector-attenuated bispecific antibodies for preclinical studies.
机译:抗体Fc区调节抗体的细胞毒性活性和血清半衰期。然而,在治疗方面,抗体的细胞毒性效应子功能通常是不希望的,并且可以通过激活针对表达受体抗原的细胞的天然宿主免疫防御来产生安全性。据报道,Fc区的几个氨基酸变化使抗体的效应子功能沉默或降低。这些较早的研究主要集中在人抗体与人Fc-γ受体的相互作用上,而对Fc的这种变化如何转化为鼠抗体的情况仍知之甚少。我们证明了在灵长类动物中减弱效应子功能有效的常用N297G(NG)和D265A,N297G(DANG)变异体在小鼠中保留了有效的补体激活能力,从而在鼠类研究中导致了安全责任。相反,我们发现了一种L234A,L235A,P329G(LALA-PG)变体,可消除鼠类IgG2a和人IgG1中的补体结合和固定以及Fc-γ依赖性,抗体依赖性,细胞介导的细胞毒性。这些LALA-PG替代可以在小鼠和灵长类动物之间更准确地翻译“无效应”抗体产生的结果。此外,我们显示,包含LALA-PG变体的人抗体和鼠抗体在啮齿动物中均具有典型的药代动力学,并保持热稳定性,从而能够高效产生结节双特异性抗体,并为临床前研究生成高效应子减毒的双特异性抗体提供了可靠的途径。

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