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牛IgG2的异质性——五。牛IgG2同种异型一级结构的差异。

The heterogeneity of bovine IgG2--V. Differences in the primary structure of bovine IgG2 allotypes.

作者信息

Heyermann H, Butler J E, Frangione B

机构信息

Department of Pathology, New York University Medical School, New York 10016.

出版信息

Mol Immunol. 1992 Sep;29(9):1147-52. doi: 10.1016/0161-5890(92)90048-3.

Abstract

The partial amino acid sequences of the gamma chains of the bovine IgG2a(A1) and IgG2a(A2) allotypes were determined. Sequence differences were found in the CH1 domain, the hinge region, and the CH3 domain. The hinge regions displayed only 71.4% similarity and all of the differences were of a radical nature. The A2 hinge has isoleucine instead of serine at 229, histidine for asparagine at 235, proline for histidine at 238, and cysteine instead of proline in position 234; the latter has the potential for forming an additional interheavy chain disulphide bridge. The occurrence of such a bridge could explain the presence of a pepsin fragment consisting of the hinge region and the Fc. A corresponding fragment is not obtained with the A1 allotype. Both allotypes have a shortened hinge region and a truncated CH2 domain. This feature is characteristic of all reported sequences of IgG2 proteins but not IgG1 in cattle and the goat. This structural feature may be important in subclass-specific recognition by Fc gamma receptors in ruminants. A surprising discovery was the occurrence of five substitutions in the CH3 domain of the IgG2a(A2) in comparison with the A1, which are shared with the CH3 of IgG1. These permit the occurrence of isoallotypic determinants and can explain the difficulty encountered in preparing A2-specific antisera during which adsorption with IgG1 is a routine procedure. The primary sequence data we report confirm the presence of major structural differences between the A allotypes of cattle that was suggested by previous work. The sequence of the A1 allotype most closely agrees with the two IgG2 sequences deduced from their nucleotide sequences whereas the sequence differences in the hinge and C-terminal CH3 make IgG2a(A2) unique. The structural differences between allotypes could have major consequences for such biological activities as phagocytosis, transepithelial transport, lymphocyte and complement activation.

摘要

测定了牛IgG2a(A1)和IgG2a(A2)同种异型γ链的部分氨基酸序列。在CH1结构域、铰链区和CH3结构域中发现了序列差异。铰链区仅显示71.4%的相似性,所有差异均具有根本性。A2铰链区在229位是异亮氨酸而非丝氨酸,235位是组氨酸而非天冬酰胺,238位是脯氨酸而非组氨酸,234位是半胱氨酸而非脯氨酸;后者有可能形成一条额外的重链间二硫键。这样一条桥的出现可以解释由铰链区和Fc组成的胃蛋白酶片段的存在。A1同种异型则无法获得相应的片段。两种同种异型都有缩短的铰链区和截短的CH2结构域。这一特征是牛和山羊中所有已报道的IgG2蛋白序列而非IgG1的特征。这种结构特征可能在反刍动物Fcγ受体的亚类特异性识别中很重要。一个惊人的发现是,与A1相比,IgG2a(A2)的CH3结构域出现了五个取代,这些取代与IgG1的CH3共有。这些取代允许同种异型决定簇的出现,并可以解释在制备A2特异性抗血清过程中遇到的困难,在此过程中用IgG1吸附是常规操作。我们报道的一级序列数据证实了先前工作所表明的牛A同种异型之间存在主要结构差异。A1同种异型的序列与从其核苷酸序列推导的两个IgG2序列最为一致,而铰链区和C末端CH3的序列差异使IgG2a(A2)独一无二。同种异型之间的结构差异可能对吞噬作用、跨上皮运输、淋巴细胞和补体激活等生物学活性产生重大影响。

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