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食蟹猴和恒河猴新生儿Fc受体的多态性。

Polymorphisms of neonatal Fc receptor in cynomolgus and rhesus macaques.

作者信息

Uno Yasuhiro, Utoh Masahiro, Iwasaki Kazuhide

机构信息

Pharmacokinetics and Bioanalysis Center, Shin Nippon Biomedical Laboratories, Ltd.

出版信息

Drug Metab Pharmacokinet. 2014;29(5):427-30. doi: 10.2133/dmpk.dmpk-14-nt-033. Epub 2014 May 6.

Abstract

Neonatal Fc receptor (FcRn), a heterodimer of MHC class I-like protein and β2-microglobulin, encoded by FCGRT and B2M, respectively, is important for recycling immunoglobulin G (IgG) antibodies by binding with the Fc region of IgG. Cynomolgus macaques are important animal species used in the evaluation of therapeutic antibodies, largely due to sequence similarities of target proteins to those of humans. Because the function of FcRn could be modified by mutations in FCGRT or B2M, 71 cynomolgus and 24 rhesus macaques were analyzed in the present study. A total of 21 variants were identified, of which 4 were non-synonymous in FCGRT. Fifteen variants were unique to cynomolgus macaques, of which 3, 2, and 5 were unique to cynomolgus macaques bred in China (MacfaCHN), Cambodia (MacfaCAM), and Indonesia (MacfaIDN), respectively. Five variants were shared by MacfaCHN and MacfaCAM, but not by MacfaIDN. In B2M, only 5 variants were found, including 2 non-synonymous variants. Tissue expression analysis showed that cynomolgus FCGRT and B2M were widely expressed in the 10 tissue types analyzed. None of the non-synonymous variants of FCGRT or B2M found changes in the amino acid residues known to be important for FcRn function, suggesting that substantial inter-animal variability of FcRn is not expected for the cynomolgus macaques analyzed.

摘要

新生儿Fc受体(FcRn)是一种由MHC I类样蛋白和β2-微球蛋白组成的异二聚体,分别由FCGRT和B2M编码,通过与IgG的Fc区域结合对循环免疫球蛋白G(IgG)抗体起重要作用。食蟹猕猴是用于评估治疗性抗体的重要动物物种,这主要归因于其靶蛋白与人类靶蛋白的序列相似性。由于FcRn的功能可能会因FCGRT或B2M中的突变而改变,因此在本研究中对71只食蟹猕猴和24只恒河猴进行了分析。总共鉴定出21个变体,其中4个在FCGRT中为非同义变体。15个变体是食蟹猕猴特有的,其中3个、2个和5个分别是在中国(MacfaCHN)、柬埔寨(MacfaCAM)和印度尼西亚(MacfaIDN)饲养的食蟹猕猴特有的。MacfaCHN和MacfaCAM共有5个变体,但MacfaIDN没有。在B2M中,仅发现5个变体,包括2个非同义变体。组织表达分析表明,食蟹猕猴的FCGRT和B2M在所分析的10种组织类型中广泛表达。在FCGRT或B2M中发现的非同义变体均未改变已知对FcRn功能重要的氨基酸残基,这表明对于所分析的食蟹猕猴而言,预计FcRn不会存在显著的动物间变异性。

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