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变温脊椎动物B淋巴细胞中的突变、选择和记忆

Mutation, selection, and memory in B lymphocytes of exothermic vertebrates.

作者信息

Hsu E

机构信息

Department of Biology, New York University, NY 10003-6688, USA.

出版信息

Immunol Rev. 1998 Apr;162:25-36. doi: 10.1111/j.1600-065x.1998.tb01426.x.

Abstract

Unlike mammals, cold-blooded vertebrates produce antibodies of low heterogeneity that show little increase in binding affinity with time after immunization. In secondary responses, antibody titers and affinities are often little, if any, higher than in primary responses. That is, specificity, diversity, and memory--the hallmarks of the immune system--are rather meager in the humoral immune responses of exothermic vertebrates. As the genetic components of the immunoglobulin (Ig) gene systems in fishes, amphibians or reptiles are not deficient in number or diversity, their responses probably do not stem from restrictions in the primary antibody repertoire. Somatic hypermutation at the Ig locus, which generates diversity and higher affinity antibodies in mammals, is not lacking in the South African frog Xenopus or in the shark. However, the Ig mutants recovered are strongly biased toward alterations at GC pairs, an indication that they have not undergone effective selection. While cells resembling follicular dendritic cells are present in cold-blooded vertebrates, germinal centers do not form. It is suggested that this absence of germinal centers, the site of selection for the mutants with higher affinity receptors and of differentiation into memory B cells in mammals, may explain the principal differences between cold and warm-blooded vertebrates.

摘要

与哺乳动物不同,冷血脊椎动物产生的抗体异质性较低,免疫后结合亲和力随时间几乎没有增加。在二次免疫反应中,抗体滴度和亲和力通常比初次免疫反应高不了多少,即便有提高也很有限。也就是说,特异性、多样性和记忆——免疫系统的标志——在外温脊椎动物的体液免疫反应中相当匮乏。由于鱼类、两栖类或爬行类动物免疫球蛋白(Ig)基因系统的遗传成分在数量或多样性上并不缺乏,它们的反应可能并非源于初始抗体库的限制。在哺乳动物中产生多样性和高亲和力抗体的Ig基因座体细胞超突变,在南非爪蟾或鲨鱼中也存在。然而,回收的Ig突变体强烈倾向于GC碱基对的改变,这表明它们没有经历有效的选择。虽然冷血脊椎动物中存在类似滤泡树突状细胞的细胞,但生发中心并不形成。有人认为,生发中心的缺失,即哺乳动物中具有高亲和力受体的突变体进行选择以及分化为记忆B细胞的场所,可能解释了冷血和温血脊椎动物之间的主要差异。

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