首页> 美国卫生研究院文献>International Immunology >Editors choice: IDO2 is critical for IDO1-mediated T-cell regulation and exerts a non-redundant function in inflammation
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Editors choice: IDO2 is critical for IDO1-mediated T-cell regulation and exerts a non-redundant function in inflammation

机译:编辑选择:IDO2对于IDO1介导的T细胞调节至关重要并且在炎症中发挥非冗余功能

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摘要

IDO2 is implicated in tryptophan catabolism and immunity but its physiological functions are not well established. Here we report the characterization of mice genetically deficient in IDO2, which develop normally but exhibit defects in IDO-mediated T-cell regulation and inflammatory responses. Construction of this strain was prompted in part by our discovery that IDO2 function is attenuated in macrophages from Ido1 −/− mice due to altered message splicing, generating a functional mosaic with implications for interpreting findings in Ido1 –/– mice. No apparent defects were observed in Ido2 –/– mice in embryonic development or hematopoietic differentiation, with wild-type profiles documented for kynurenine in blood serum and for immune cells in spleen, lymph nodes, peritoneum, thymus and bone marrow of naive mice. In contrast, upon immune stimulation we determined that IDO1-dependent T regulatory cell generation was defective in Ido2 −/− mice, supporting Ido1–Ido2 genetic interaction and establishing a functional role for Ido2 in immune modulation. Pathophysiologically, both Ido1 −/− and Ido2 −/− mice displayed reduced skin contact hypersensitivity responses, but mechanistic distinctions were apparent, with only Ido2 deficiency associated with a suppression of immune regulatory cytokines that included GM-CSF, G-CSF, IFN-γ, TNF-α, IL-6 and MCP-1/CCL2. Different contributions to inflammation were likewise indicated by the finding that Ido2 / mice did not phenocopy Ido1 / mice in the reduced susceptibility of the latter to inflammatory skin cancer. Taken together, our results offer an initial glimpse into immune modulation by IDO2, revealing its genetic interaction with IDO1 and distinguishing its non-redundant contributions to inflammation.
机译:IDO2与色氨酸分解代谢和免疫有关,但其生理功能尚未完全确立。在这里,我们报告了IDO2基因缺陷的小鼠的特征,该小鼠正常发育但在IDO介导的T细胞调节和炎症反应中表现出缺陷。该菌株的构建部分是由于我们的发现,即由于消息剪接的改变,IDO2功能在Ido1 -/-小鼠的巨噬细胞中减弱了,从而产生了功能性嵌合体,对Ido1 – / – 小鼠。在Ido2 – / – 小鼠的胚胎发育或造血分化中未观察到明显的缺陷,其野生型谱显示血清中犬尿氨酸和脾脏,淋巴结,腹膜,胸腺和幼稚小鼠的骨髓。相反,在免疫刺激后,我们确定IDo1依赖性T调节细胞的生成在Ido2 -/-小鼠中是有缺陷的,支持Ido1–Ido2遗传相互作用,并确定Ido2在免疫调节中的功能。病理生理上,Ido1 -/-和Ido2 -/-小鼠均表现出减少的皮肤接触超敏反应,但机制上的区别是明显的,只有Ido2缺乏与免疫抑制有关。调节性细胞因子包括GM-CSF,G-CSF,IFN-γ,TNF-α,IL-6和MCP-1 / CCL2。通过发现Ido2 - / -小鼠没有表型 Ido1 - / < / em>-小鼠对炎性皮肤癌的敏感性降低。综上所述,我们的研究结果初步揭示了IDO2的免疫调节作用,揭示了其与IDO1的遗传相互作用,并区分了其对炎症的非冗余贡献。

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