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Cathepsin B-Deficient Mice Resolve Leishmania major Inflammation Faster in a T Cell-Dependent Manner

机译:组织蛋白酶B缺陷小鼠以依赖T细胞的方式更快地解决了利什曼原虫的严重炎症

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摘要

A critical role for intracellular TLR9 has been described in recognition and host resistance to Leishmania parasites. As TLR9 requires endolysosomal proteolytic cleavage to achieve signaling functionality, we investigated the contribution of different proteases like asparagine endopeptidase (AEP) or cysteine protease cathepsins B (CatB), L (CatL) and S (CatS) to host resistance during Leishmania major (L. major) infection in C57BL/6 (WT) mice and whether they would impact on TLR9 signaling. Unlike TLR9-/-, which are more susceptible to infection, AEP-/-, CatL-/- and CatS-/- mice are as resistant to L. major infection as WT mice, suggesting that these proteases are not individually involved in TLR9 processing. Interestingly, we observed that CatB-/- mice resolve L. major lesions significantly faster than WT mice, however we did not find evidence for an involvement of CatB on either TLR9-dependent or independent cytokine responses of dendritic cells and macrophages or in the innate immune response to L. major infection. We also found no difference in antigen presenting capacity. We observed a more precocious development of T helper 1 responses accompanied by a faster decline of inflammation, resulting in resolution of footpad inflammation, reduced IFNγ levels and decreased parasite burden. Adoptive transfer experiments into alymphoid RAG2-/-γc-/- mice allowed us to identify CD3+ T cells as responsible for the immune advantage of CatB-/- mice towards L. major. In vitro data confirmed the T cell intrinsic differences between CatB-/- mice and WT. Our study brings forth a yet unappreciated role for CatB in regulating T cell responses during L. major infection.
机译:已经描述了细胞内TLR9在识别和宿主对利什曼原虫寄生虫的抗性中的关键作用。由于TLR9需要进行溶酶体蛋白水解裂解才能实现信号转导功能,因此我们研究了不同蛋白酶如天冬酰胺内肽酶(AEP)或半胱氨酸蛋白酶组织蛋白酶B(CatB),L(CatL)和S(CatS)对利什曼原虫病(L C57BL / 6(WT)小鼠感染),以及它们是否会影响TLR9信号传导。与更容易感染的TLR9 -/-不同,AEP -//-,CatL -/-和CatS -/ -小鼠与野生型小鼠一样对大肠埃希氏菌感染具有抗性,表明这些蛋白酶并没有单独参与TLR9加工。有趣的是,我们观察到CatB -/-小鼠比野生型小鼠显着更快地解决了L.主要病变,但是我们没有发现CatB参与树突状细胞的TLR9依赖性或独立细胞因子反应的证据。细胞和巨噬细胞或在固有免疫反应中对大肠埃希菌的感染。我们还发现抗原呈递能力没有差异。我们观察到T辅助1反应的较早发展,伴随着炎症的更快下降,导致足垫炎症的消退,IFNγ水平的降低和寄生虫负担的降低。通过对Amphmphoid RAG2 -//-γc-/-小鼠的过继转移实验,我们得以鉴定出负责CatB -/-< / sup>小鼠进入大乳酸杆菌。体外数据证实了CatB -// 小鼠和WT之间的T细胞固有差异。我们的研究提出了CatB在主要感染乳杆菌期间调节T细胞反应中尚未发挥的作用。

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