Department of Microbiology and Immunology, University of Rochester Medical Center, Rochester, NY 14642, USA.
Proc Natl Acad Sci U S A. 2013 Aug 27;110(35):14342-7. doi: 10.1073/pnas.1309840110. Epub 2013 Aug 12.
Human and murine MHC nonclassical class Ib-restricted invariant T (iT) cell subsets, such as invariant natural killer T cells (iNKT) and mucosal-associated invariant T cells, have specialized functions early in immune responses, especially in modulating subsequent adaptive immune responses. Here, we characterize a prominent iT population in the amphibian Xenopus laevis and show the requirement of the class Ib molecule, Xenopus nonclassical gene 10, in its differentiation and function. Using Xenopus nonclassical gene 10 tetramers and RNAi loss of function by transgenesis, we identified a large class Ib-dependent CD8(-)/CD4(-) iT subset in unmanipulated frogs and tadpoles. This population is critical for antiviral immunity during early larval stages when classical MHC class Ia function is suboptimal. Furthermore, in young tadpoles with low class Ia expression, deep sequencing revealed additional preponderant invariant T cell receptor (TCR)α rearrangements, implying other iT cell subsets and a predominant selection process mediated by other class Ib molecules. The restriction and requirement of class Ib molecules for development and antiviral immunity of a mammalian iNKT or mucosal-associated invariant T cell counterpart in the amphibian Xenopus show the importance of iT cells in the emergence and evolution of the adaptive immune system.
人类和鼠类 MHC 非经典 I 类限制的不变 T(iT)细胞亚群,如天然杀伤 T 细胞(iNKT)和黏膜相关不变 T 细胞,在免疫反应早期具有特殊功能,特别是在调节随后的适应性免疫反应方面。在这里,我们描述了非洲爪蟾 Xenopus laevis 中的一个显著的 iT 群体,并显示了 I 类分子 Xenopus nonclassical gene 10 在其分化和功能中的作用。使用 Xenopus nonclassical gene 10 四聚体和通过转基因进行 RNAi 功能丧失,我们在未处理的青蛙和蝌蚪中鉴定出一个大的依赖于 I 类的 CD8(-)/CD4(-)iT 亚群。当经典 MHC I 类功能不佳时,这个群体对于早期幼虫阶段的抗病毒免疫至关重要。此外,在低表达 I 类的年轻蝌蚪中,深度测序揭示了其他更多的优势不变 T 细胞受体(TCR)α重排,这意味着存在其他 iT 细胞亚群和由其他 I 类分子介导的主要选择过程。在两栖动物 Xenopus 中,哺乳动物 iNKT 或黏膜相关不变 T 细胞对应物的 I 类分子的限制和要求对于其发育和抗病毒免疫的重要性表明,iT 细胞在适应性免疫系统的出现和进化中具有重要意义。