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人源 CD34+ 髓系树突状细胞的发育需要完整的磷脂酰肌醇 3-激酶-蛋白激酶 B-雷帕霉素靶蛋白信号通路。

Human CD34-derived myeloid dendritic cell development requires intact phosphatidylinositol 3-kinase-protein kinase B-mammalian target of rapamycin signaling.

机构信息

Department of Gastroenterology and Hepatology, Erasmus MC-University Medical Center, Rotterdam, The Netherlands.

出版信息

J Immunol. 2010 Jun 15;184(12):6600-11. doi: 10.4049/jimmunol.0903089. Epub 2010 May 19.

DOI:10.4049/jimmunol.0903089
PMID:20488790
Abstract

Dendritic cells (DCs) are composed of different subsets that exhibit distinct functionality in the induction and regulation of immune responses. The myeloid DC subsets, including interstitial DCs and Langerhans cells (LCs), develop from CD34+ hematopoietic progenitors via direct DC precursors or monocytes. The molecular mechanisms regulating DC development are still largely unknown and mostly studied in mice. Phosphatidylinositol 3-kinase (PI3K) regulates multiple processes in myeloid cells. This study investigated the role of PI3K signaling in the development of human CD34-derived myeloid DCs. Pharmacologic inhibition of PI3K or one of its downstream targets mTOR reduced interstitial DC and LC numbers in vitro. Increased activity of this signaling module by introduction of constitutively active protein kinase B (PKB/c-Akt) increased the yields of human DC precursors in vitro as well as in transplanted beta2-microglobulin-/- NOD/SCID mice in vivo. Signaling inhibition during differentiation did not affect the acquisition of a DC phenotype, whereas proliferation and survival strongly depended on intact PI3K-PKB-mTOR signaling. Interestingly, however, this pathway became redundant for survival regulation upon terminal differentiation, which was associated with an altered expression of apoptosis regulating genes. Although dispensable for costimulatory molecule expression, the PI3K-PKB-mTOR signaling module was required for other important processes associated with DC function, including Ag uptake, LPS-induced cytokine secretion, CCR7 expression, and T cell stimulation. Thus, PI3K-PKB-mTOR signaling plays a crucial role in the development of functional CD34-derived myeloid DCs. These findings could be used as a strategy to manipulate DC subset distribution and function to regulate immunity.

摘要

树突状细胞 (DCs) 由不同亚群组成,这些亚群在诱导和调节免疫反应方面具有不同的功能。髓系 DC 亚群包括间质 DC 和朗格汉斯细胞 (LCs),它们由 CD34+造血祖细胞通过直接 DC 前体或单核细胞发育而来。调节 DC 发育的分子机制在很大程度上仍然未知,并且主要在小鼠中进行研究。磷酸肌醇 3-激酶 (PI3K) 调节髓系细胞中的多种过程。本研究探讨了 PI3K 信号在人 CD34 衍生的髓系 DC 发育中的作用。PI3K 的药理学抑制或其下游靶点 mTOR 的抑制减少了体外间质 DC 和 LC 的数量。通过引入组成型活性蛋白激酶 B (PKB/c-Akt) 增加该信号模块的活性,增加了体外人 DC 前体的产量以及体内移植的β2-微球蛋白-/-NOD/SCID 小鼠中的产量。分化过程中信号抑制不影响 DC 表型的获得,而增殖和存活强烈依赖于完整的 PI3K-PKB-mTOR 信号通路。然而,有趣的是,该途径在终末分化时对于生存调节变得冗余,这与凋亡调节基因的表达改变有关。尽管对于共刺激分子表达来说不是必需的,但 PI3K-PKB-mTOR 信号模块对于与 DC 功能相关的其他重要过程是必需的,包括 Ag 摄取、LPS 诱导的细胞因子分泌、CCR7 表达和 T 细胞刺激。因此,PI3K-PKB-mTOR 信号在功能性 CD34 衍生的髓系 DC 的发育中起着至关重要的作用。这些发现可用于操纵 DC 亚群分布和功能以调节免疫的策略。

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