Igarashi T, Sato M, Katsube Y, Takio K, Tanaka T, Nakanishi M, Arata Y
Faculty of Pharmaceutical Sciences, University of Tokyo, Japan.
Biochemistry. 1990 Jun 19;29(24):5727-33. doi: 10.1021/bi00476a013.
The structure of a short-chain IgG2a antibody, which is a member of the family of mouse anti-dansyl switch variant antibodies with identical variable regions but different heavy-chain constant regions [Dangl, J.L., Parks, D. R., Oi, V. T., & Herzenberg, L. A. (1982) Cytometry 2, 395-401], is reported. Amino acid sequencing analyses have demonstrated that in the short-chain IgG2a antibody the entire CH1 domain is deleted whereas the hinge region remains intact. Small-angle X-ray scattering data were collected for the short-chain IgG2a antibody and compared with those for the switch variant IgG1, IgG2a, and IgG2b antibodies with the normal heavy chain. It has been concluded that deletion of the CH1 domain results in a large structural change and the short-chain IgG2a antibody possesses an elongated molecular shape with a much smaller hinge angle as compared with the normal IgG2a antibody that is a Y-shaped molecule.
报道了一种短链IgG2a抗体的结构,它是小鼠抗丹磺酰开关变体抗体家族的成员,其可变区相同但重链恒定区不同[丹格尔,J.L.,帕克斯,D.R.,奥伊,V.T.,& 赫曾伯格,L.A.(1982年)《细胞计数》2,395 - 401]。氨基酸测序分析表明,在短链IgG2a抗体中,整个CH1结构域被删除,而铰链区保持完整。收集了短链IgG2a抗体的小角X射线散射数据,并与具有正常重链的开关变体IgG1、IgG2a和IgG2b抗体的数据进行了比较。得出的结论是,CH1结构域的缺失导致了较大的结构变化,并且与呈Y形分子的正常IgG2a抗体相比,短链IgG2a抗体具有拉长的分子形状和小得多的铰链角。