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Sca-1 表达定义了小鼠 pDC 的发育阶段,这些阶段在内体而非溶酶体 TLR9 反应中表现出功能异质性。

Sca-1 expression defines developmental stages of mouse pDCs that show functional heterogeneity in the endosomal but not lysosomal TLR9 response.

机构信息

Miltenyi Biotec GmbH, Bergisch Gladbach, Germany.

出版信息

Eur J Immunol. 2013 Nov;43(11):2993-3005. doi: 10.1002/eji.201343498. Epub 2013 Aug 27.

Abstract

Plasmacytoid dendritic cells (pDCs) play an important role in innate and adaptive immunity and were shown to be identical to previously described natural interferon (IFN)-α-producing cells. Here, we describe two functionally distinct pDC subpopulations that are characterized by the differential expression of stem cell antigen-1 (Sca-1; Ly-6A/E). Sca-1(-) pDCs are mainly found in the BM, appear first during development, show a higher proliferative activity, and represent the more precursor phenotype. Sca-1(+) pDCs are mostly located in secondary lymphoid organs and represent a later developmental stage. Sca-1(-) pDCs give rise to an Sca-1(+) subset upon activation or in response to endogenous type I IFN. Interestingly, in contrast to Sca-1(-) pDCs, Sca-1(+) pDCs are defective in IFN-α production upon endosomal TLR9 stimulation, whereas lysosomal signaling via TLR9 is functional in both subsets. Gene expression analysis revealed that osteopontin is strongly upregulated in Sca-1(-) pDCs. These data provide evidence for the molecular basis of the observed functional heterogeneity, as the intracellular isoform of osteopontin couples TLR9 signaling to IFN-α expression. Taken together, our results indicate that Sca-1(-) pDCs are an early developmental stage of pDCs with distinct innate functions representing the true murine natural IFN-α-producing cells.

摘要

浆细胞样树突状细胞 (pDC) 在先天和适应性免疫中发挥重要作用,并且被证明与先前描述的天然干扰素 (IFN)-α 产生细胞相同。在这里,我们描述了两种功能不同的 pDC 亚群,其特征在于干细胞抗原-1 (Sca-1; Ly-6A/E) 的差异表达。Sca-1(-) pDC 主要存在于 BM 中,在发育过程中首先出现,表现出更高的增殖活性,并且代表更原始的表型。Sca-1(+) pDC 主要位于次级淋巴器官,代表较晚的发育阶段。Sca-1(-) pDC 在激活或响应内源性 I 型 IFN 时会产生 Sca-1(+)亚群。有趣的是,与 Sca-1(-) pDC 相反,Sca-1(+) pDC 在内体 TLR9 刺激时 IFN-α 产生缺陷,而 TLR9 的溶酶体信号在两个亚群中均起作用。基因表达分析表明,骨桥蛋白在 Sca-1(-) pDC 中强烈上调。这些数据为观察到的功能异质性提供了分子基础,因为骨桥蛋白的细胞内同工型将 TLR9 信号与 IFN-α 表达偶联。总之,我们的结果表明 Sca-1(-) pDC 是 pDC 的早期发育阶段,具有独特的先天功能,代表真正的鼠天然 IFN-α 产生细胞。

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