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DNGR-1调节骨髓树突状细胞祖细胞的增殖和迁移。

DNGR-1 regulates proliferation and migration of bone marrow dendritic cell progenitors.

作者信息

Cardoso Ana, Buck Michael D, Frederico Bruno, Chakravarty Probir, Schulz Oliver, Lim Kok Haw Jonathan, Piot Cécile, Pereira da Costa Mariana, Giampazolias Evangelos, Gasparrini Francesca, Rogers Neil, Reis E Sousa Caetano

机构信息

Immunobiology Laboratory, The Francis Crick Institute , London, UK.

Bioinformatics and Biostatistics, The Francis Crick Institute , London, UK.

出版信息

J Exp Med. 2025 Aug 4;222(8). doi: 10.1084/jem.20241813. Epub 2025 May 13.

Abstract

Conventional dendritic cells (cDCs) are sentinel cells that play a crucial role in both innate and adaptive immune responses. cDCs originate from a progenitor (pre-cDC) in the bone marrow (BM) that travels via the blood to seed peripheral tissues before locally differentiating into functional cDC1 and cDC2 cells, as part of a process known as cDCpoiesis. How cDCpoiesis is regulated and whether this affects the output of cDCs is poorly understood. In this study, we show that DNGR-1, an innate immune receptor expressed by cDC progenitors and type 1 cDCs, can regulate cDCpoiesis in mice. In a competitive chimera setting, cDC progenitors lacking DNGR-1 exhibit increased proliferation and tissue migratory potential. Compared with their WT counterparts, DNGR-1-deficient cDC progenitor cells display superior colonization of peripheral tissues but an altered distribution. These findings suggest that cDCpoiesis can be regulated in part by precursor cell-intrinsic processes driven by signals from innate immune receptors such as DNGR-1 that may respond to alterations in the BM milieu.

摘要

传统树突状细胞(cDCs)是哨兵细胞,在先天性和适应性免疫反应中都发挥着关键作用。cDCs起源于骨髓(BM)中的祖细胞(前cDC),该祖细胞通过血液迁移至外周组织,然后在局部分化为功能性cDC1和cDC2细胞,这是被称为cDC生成过程的一部分。目前人们对cDC生成过程如何受到调控以及这是否会影响cDCs的输出了解甚少。在本研究中,我们发现DNGR-1(一种由cDC祖细胞和1型cDC表达的先天性免疫受体)可以调节小鼠的cDC生成。在竞争性嵌合体环境中,缺乏DNGR-1的cDC祖细胞表现出增殖增加和组织迁移潜力增强。与野生型对应细胞相比,缺乏DNGR-1的cDC祖细胞在外周组织中具有更好的定植能力,但分布发生了改变。这些发现表明,cDC生成过程可能部分受前体细胞内在过程的调控,这些过程由先天性免疫受体(如DNGR-1)发出的信号驱动,而这些信号可能对骨髓微环境的变化做出反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dec/12071193/2781c77591ed/jem_20241813_fig1.jpg

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