Center for Evolutionary and Theoretical Immunology, Department of Biology, University of New Mexico, Albuquerque, NM 87131-0001, USA.
Eur J Immunol. 2010 Aug;40(8):2319-29. doi: 10.1002/eji.201040515.
The content and organization of the Xenopus tropicalis TCRα/δ locus was determined. This locus is highly conserved among tetrapods, with the genes encoding the TCRδ chains embedded with those encoding TCRα. However, the frog TCRα/δ is unusual in that it contains V genes that appear indistinguishable from those in the IgH locus (VH). These V genes, termed VHδ, make up 70% of the V genes at the TCRδ locus and are expressed exclusively in TCRδ chains. Finding TCRδ chains that use antibody-like V domains in frogs is similar to the situation in shark TCRδ variants and TCRμ in marsupials. These results suggest that such unconventional TCR may be more widespread across vertebrate lineages than originally thought and raise the possibility of previously unrealized subsets of T cells. We also revealed close linkage of TCRα/δ, IgH, and Igλ in Xenopus which, in combination with linkage analyses in other species, is consistent with the previous models for the emergence of these antigen receptor loci.
测定了非洲爪蟾 TCRα/δ 基因座的内容和组织。该基因座在四足动物中高度保守,编码 TCRδ 链的基因与编码 TCRα 的基因嵌入在一起。然而,青蛙的 TCRα/δ 不同寻常之处在于它包含与 IgH 基因座(VH)中的基因几乎无法区分的 V 基因。这些 V 基因被称为 VHδ,占 TCRδ 基因座 V 基因的 70%,仅在 TCRδ 链上表达。在青蛙中发现使用类似抗体的 V 结构域的 TCRδ 链类似于鲨鱼 TCRδ 变体和有袋动物的 TCRμ 的情况。这些结果表明,这种非常规的 TCR 在脊椎动物谱系中的分布可能比最初想象的更为广泛,并提出了以前未实现的 T 细胞亚群的可能性。我们还揭示了非洲爪蟾 TCRα/δ、IgH 和 Igλ 的紧密连锁,这与其他物种的连锁分析相结合,与这些抗原受体基因座出现的先前模型一致。