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通过随机诱变提高IgG片段的血清持久性。

Increasing the serum persistence of an IgG fragment by random mutagenesis.

作者信息

Ghetie V, Popov S, Borvak J, Radu C, Matesoi D, Medesan C, Ober R J, Ward E S

机构信息

Department of Microbiology, University of Texas Southwestern Medical Center, Dallas 75235-8576, USA.

出版信息

Nat Biotechnol. 1997 Jul;15(7):637-40. doi: 10.1038/nbt0797-637.

Abstract

The major histocompatibility complex (MHC) class I-related receptor FcRn is involved in regulating serum gammaglobulin (IgG) levels in mice. With the aim of increasing the serum half-life of a recombinant murine Fc gamma 1 fragment, the affinity for binding to FcRn at pH 6.0 has been increased by random mutagenesis of Thr252, Thr254, and Thr256 followed by selection using bacteriophage display. These residues were chosen as they are in proximity to the FcRn-IgG (Fc) interaction site. Two mutants with higher affinity (due to lower off-rates) than the wild-type Fc have been isolated and analyzed in pharmacokinetic studies in mice. The mutant with the highest affinity has a significantly longer serum half-life than the wild type fragment, despite its lower off-rate from FcRn at pH 7.4. The results provide support for the involvement of FcRn in the homeostasis of serum IgGs in mice. The indications that a homologous FcRn regulates IgG levels in humans suggest that this approach has implications for increasing the serum persistence of therapeutic antibodies.

摘要

主要组织相容性复合体(MHC)I类相关受体FcRn参与调节小鼠血清γ球蛋白(IgG)水平。为了延长重组鼠Fcγ1片段的血清半衰期,通过对Thr252、Thr254和Thr256进行随机诱变,随后利用噬菌体展示进行筛选,增强了其在pH 6.0时与FcRn的结合亲和力。选择这些残基是因为它们靠近FcRn-IgG(Fc)相互作用位点。已分离出两个亲和力高于野生型Fc(由于解离速率较低)的突变体,并在小鼠的药代动力学研究中进行了分析。亲和力最高的突变体尽管在pH 7.4时从FcRn的解离速率较低,但其血清半衰期比野生型片段显著延长。这些结果为FcRn参与小鼠血清IgG的稳态提供了支持。同源FcRn调节人类IgG水平的迹象表明,这种方法对于延长治疗性抗体在血清中的存留时间具有重要意义。

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