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绿海龟(蠵龟)拥有新型不对称抗体。

Green Turtles (Chelonia mydas) Have Novel Asymmetrical Antibodies.

作者信息

Work Thierry M, Dagenais Julie, Breeden Renee, Schneemann Anette, Sung Joyce, Hew Brian, Balazs George H, Berestecky John M

机构信息

U.S. Geological Survey, National Wildlife Health Center-Honolulu Field Station, Honolulu, HI 96850;

Nano-Imaging Services, Inc., San Diego, CA 92121;

出版信息

J Immunol. 2015 Dec 1;195(11):5452-60. doi: 10.4049/jimmunol.1501332. Epub 2015 Oct 23.

Abstract

Igs in vertebrates comprise equally sized H and L chains, with exceptions such as H chain-only Abs in camels or natural Ag receptors in sharks. In Reptilia, Igs are known as IgYs. Using immunoassays with isotype-specific mAbs, in this study we show that green turtles (Chelonia mydas) have a 5.7S 120-kDa IgY comprising two equally sized H/L chains with truncated Fc and a 7S 200-kDa IgY comprised of two differently sized H chains bound to L chains and apparently often noncovalently associated with an antigenically related 90-kDa moiety. Both the 200- and 90-kDa 7S molecules are made in response to specific Ag, although the 90-kDa molecule appears more prominent after chronic Ag stimulation. Despite no molecular evidence of a hinge, electron microscopy reveals marked flexibility of Fab arms of 7S and 5.7S IgY. Both IgY can be captured with protein G or melon gel, but less so with protein A. Thus, turtle IgY share some characteristics with mammalian IgG. However, the asymmetrical structure of some turtle Ig and the discovery of an Ig class indicative of chronic antigenic stimulation represent striking advances in our understanding of immunology.

摘要

脊椎动物的免疫球蛋白由大小相等的重链和轻链组成,但也有例外,如骆驼的仅重链抗体或鲨鱼的天然抗原受体。在爬行动物中,免疫球蛋白被称为IgY。在本研究中,我们使用针对同种型的单克隆抗体进行免疫测定,结果显示绿海龟(蠵龟)有一个5.7S 120 kDa的IgY,由两条大小相等的重链/轻链组成,Fc段截短,还有一个7S 200 kDa的IgY,由两条大小不同的重链与轻链结合而成,且显然经常与一个抗原相关的90 kDa部分非共价结合在一起。200 kDa和90 kDa的7S分子都是针对特定抗原产生的,但90 kDa分子在长期抗原刺激后显得更为突出。尽管没有分子证据表明存在铰链区,但电子显微镜显示7S和5.7S IgY的Fab臂具有明显的灵活性。两种IgY都可以被蛋白G或瓜尔胶捕获,但被蛋白A捕获的能力较弱。因此,海龟IgY与哺乳动物IgG有一些共同特征。然而,一些海龟免疫球蛋白的不对称结构以及一种指示慢性抗原刺激的免疫球蛋白类别的发现代表了我们在免疫学理解上的显著进展。

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