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一种抗体的极端热稳定性和亲和力成熟的综合方法。

An integrated approach to extreme thermostabilization and affinity maturation of an antibody.

机构信息

AnaptysBio, Inc., 10421 Pacific Center Court, Suite 200, San Diego, CA 92121, USA.

出版信息

Protein Eng Des Sel. 2013 Feb;26(2):151-64. doi: 10.1093/protein/gzs090. Epub 2012 Nov 19.

Abstract

Antibodies are important tools for a broad range of applications due to their high specificity and ability to recognize virtually any target molecule. However, in order to be practically useful, antibodies must be highly stable and bind their target antigens with high affinity. We present a combinatorial approach to generate high-affinity, highly stable antibodies through the design of stable frameworks, specificity grafting and maturation via somatic hypermutation in vitro. By collectively employing these methods, we have engineered a highly stable, high-affinity, full-length antibody with a T(m) over 90°C that retains significant activity after heating to 90°C for 1 h, and has ~95-fold improved antigen-binding affinity. The stabilized IgG framework is compatible with affinity maturation, and should provide a broadly useful scaffold for grafting a variety of complementarity-determining region loops for the development of stable antibodies with desired specificities.

摘要

抗体由于其高特异性和识别几乎任何目标分子的能力,是广泛应用的重要工具。然而,为了实际有用,抗体必须具有高度的稳定性和与目标抗原高亲和力的结合。我们通过设计稳定的框架、特异性移植和体外体细胞超突变的成熟,提出了一种组合方法来产生高亲和力、高稳定性的抗体。通过集体使用这些方法,我们设计了一种高度稳定、高亲和力的全长抗体,其 Tm 超过 90°C,在 90°C 加热 1 小时后仍保持显著的活性,并且抗原结合亲和力提高了约 95 倍。稳定的 IgG 框架与亲和力成熟兼容,应为开发具有所需特异性的稳定抗体提供一种广泛有用的互补决定区环嫁接支架。

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