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RAG1 泛素连接酶结构域刺激 TCRβ 和 TCRα 基因的重组,并影响 αβ T 细胞谱系的发育。

The RAG1 Ubiquitin Ligase Domain Stimulates Recombination of TCRβ and TCRα Genes and Influences Development of αβ T Cell Lineages.

机构信息

Penn Institute for Immunology, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA.

Division of Rheumatology, The Children's Hospital of Philadelphia, Philadelphia, PA.

出版信息

J Immunol. 2022 Sep 1;209(5):938-949. doi: 10.4049/jimmunol.2001441. Epub 2022 Aug 10.

Abstract

RAG1/RAG2 (RAG) endonuclease-mediated assembly of diverse lymphocyte Ag receptor genes by V(D)J recombination is critical for the development and immune function of T and B cells. The RAG1 protein contains a ubiquitin ligase domain that stabilizes RAG1 and stimulates RAG endonuclease activity in vitro. We report in this study that mice with a mutation that inactivates the Rag1 ubiquitin ligase in vitro exhibit decreased rearrangements and altered repertoires of TCRβ and TCRα genes in thymocytes and impaired thymocyte developmental transitions that require the assembly and selection of functional TCRβ and/or TCRα genes. These Rag1 mutant mice present diminished positive selection and superantigen-mediated negative selection of conventional αβ T cells, decreased genesis of invariant NK T lineage αβ T cells, and mature CD4 αβ T cells with elevated autoimmune potential. Our findings reveal that the Rag1 ubiquitin ligase domain functions in vivo to stimulate TCRβ and TCRα gene recombination and influence differentiation of αβ T lineage cells, thereby establishing replete diversity of αβ TCRs and populations of αβ T cells while restraining generation of potentially autoreactive conventional αβ T cells.

摘要

RAG1/RAG2(RAG)内切酶介导的多样性淋巴细胞抗原受体基因的 V(D)J 重排对于 T 和 B 细胞的发育和免疫功能至关重要。RAG1 蛋白含有一个泛素连接酶结构域,该结构域稳定 RAG1 并在体外刺激 RAG 内切酶活性。我们在这项研究中报告,体外失活 Rag1 泛素连接酶的突变小鼠表现出减少的 TCRβ和 TCRα基因重排和改变的库,并且在需要功能性 TCRβ和/或 TCRα基因组装和选择的胸腺细胞中发育过渡受损。这些 Rag1 突变小鼠呈现出常规 αβ T 细胞的阳性选择和超抗原介导的阴性选择减少,不变 NK T 谱系 αβ T 细胞的生成减少,以及具有升高的自身免疫潜能的成熟 CD4αβ T 细胞。我们的发现表明,Rag1 泛素连接酶结构域在体内发挥作用,以刺激 TCRβ和 TCRα基因重组,并影响 αβ T 谱系细胞的分化,从而建立充实的 αβ TCR 多样性和 αβ T 细胞群体,同时抑制潜在自身反应性常规 αβ T 细胞的产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d842/9492648/dc3c1211f22e/nihms-1821129-f0001.jpg

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