Seidl K J, Wilshire J A, MacKenzie J D, Kantor A B, Herzenberg L A, Herzenberg L A
Department of Genetics, Stanford University School of Medicine, Stanford, CA 94305, USA.
Proc Natl Acad Sci U S A. 1999 Mar 2;96(5):2262-7. doi: 10.1073/pnas.96.5.2262.
Antibodies to phosphatidylcholine (PtC), a common constituent of mammalian and bacterial cell membranes, represent a large proportion of the natural antibody repertoire in mice. Previous studies of several mouse strains (e.g., C57BL/6) have shown that anti-PtC antibodies are mainly encoded by the VH11 and VH12 immunoglobulin heavy chain variable region gene families. We show here, however, that VH11 and VH12 encode only a small proportion of the anti-PtC antibodies in BALB/c mice. Instead, VHQ52-encoded antibodies predominate in this strain. In addition, two-thirds of the cells expressing VHQ52 family genes use a single gene (which, interestingly, has been previously shown to predominate in the anti-oxazolone response). We also show here that in anti-PtC antibodies from all strains, the distinctive antigen-binding sites associated with VHQ52 differ substantially from those associated with VH11 and VH12. That is, VHQ52-containing transcripts preferentially use the joining region JH4 rather than JH1 and exhibit more diverse complementarity-determining region 3 (CDR3) junctions with more N-region nucleotide additions at the gene segment junctions. Thus, the VH gene family that predominates in the anti-PtC repertoire differs among mouse strains, whereas the distinctive VHDJH rearrangements (CDR3, JH) associated with each VH gene family are similar in all strains. We discuss these findings in the context of a recent hypothesis suggesting that CDR3 structure, independent of VH framework, is sufficient to define the specificity of an antibody.
磷脂酰胆碱(PtC)是哺乳动物和细菌细胞膜的常见成分,针对它的抗体在小鼠天然抗体库中占很大比例。此前对几种小鼠品系(如C57BL/6)的研究表明,抗PtC抗体主要由VH11和VH12免疫球蛋白重链可变区基因家族编码。然而,我们在此表明,VH11和VH12仅编码BALB/c小鼠中一小部分抗PtC抗体。相反,VHQ52编码的抗体在该品系中占主导地位。此外,表达VHQ52家族基因的细胞中有三分之二使用单个基因(有趣的是,此前已表明该基因在抗恶唑酮反应中占主导地位)。我们在此还表明,在所有品系的抗PtC抗体中,与VHQ52相关的独特抗原结合位点与那些与VH11和VH12相关的位点有很大不同。也就是说,含VHQ52的转录本优先使用连接区JH4而非JH1,并表现出更多样化的互补决定区3(CDR3)连接,在基因片段连接处有更多N区核苷酸添加。因此,在抗PtC抗体库中占主导地位的VH基因家族在不同小鼠品系中有所不同,而与每个VH基因家族相关的独特VHDJH重排(CDR3、JH)在所有品系中相似。我们在最近一个假说的背景下讨论这些发现,该假说认为CDR3结构独立于VH框架足以定义抗体的特异性。