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胸腺信号调节蛋白α阳性常规树突状细胞以CCR2依赖的方式对血源抗原的中枢耐受起关键作用。

Crucial contribution of thymic Sirp alpha+ conventional dendritic cells to central tolerance against blood-borne antigens in a CCR2-dependent manner.

作者信息

Baba Tomohisa, Nakamoto Yasunari, Mukaida Naofumi

机构信息

Division of Molecular Bioregulation, Cancer Research Institute, Kanazawa University, Kanazawa, Ishikawa, Japan.

出版信息

J Immunol. 2009 Sep 1;183(5):3053-63. doi: 10.4049/jimmunol.0900438. Epub 2009 Aug 12.

Abstract

Thymic dendritic cells (DCs) as well as thymic epithelial cells are presumed to be major sentinels in central tolerance by inducing the apoptosis of autoreactive T progenitor cells. The thymic DC population is composed of heterogeneous subsets including CD11c(+)B220(+) plasmacytoid DCs, CD11c(+)B220(-)CD8alpha(+) signal regulatory protein alpha (Sirpalpha)(-) and CD11c(+)B220(-)CD8alpha(-)Sirpalpha(+) conventional DCs (cDCs). However, the distinctive role of each DC subset remains undefined. We show herein that Sirpalpha(+) cDCs, a minor subpopulation, was disseminated in the thymic cortical area with some of them uniquely localized inside perivascular regions and nearby small vessels in the thymus. The Sirpalpha(+) but not Sirpalpha(-) cDC subset can selectively capture blood-circulating Ags. Moreover, in CCR2-deficient mice, the thymic Sirpalpha(+) cDC subset, but not other thymic cell components, was moderately decreased especially in the perivascular regions. Concomitantly, these mice exhibited a modest impairment in intrathymic negative selection against blood-borne Ags, with the reduced capacity to uptake blood-borne Ags. Given their intrathymic cortical localization, CD11c(+)B220(-)CD8alpha(-)Sirpalpha(+) cDCs can have a unique role in the development of central tolerance against circulating peripheral Ags, at least partially in a CCR2-dependent manner.

摘要

胸腺树突状细胞(DCs)以及胸腺上皮细胞被认为是中枢耐受中的主要哨兵,可诱导自身反应性T祖细胞凋亡。胸腺DC群体由异质性亚群组成,包括CD11c(+)B220(+)浆细胞样DCs、CD11c(+)B220(-)CD8α(+)信号调节蛋白α(Sirpα)(-)和CD11c(+)B220(-)CD8α(-)Sirpα(+)传统DCs(cDCs)。然而,每个DC亚群的独特作用仍不明确。我们在此表明,Sirpα(+) cDCs作为一个较小的亚群,分布于胸腺皮质区域,其中一些独特地定位于胸腺血管周围区域和小血管附近。Sirpα(+)而非Sirpα(-) cDC亚群能够选择性捕获血液循环中的抗原。此外,在CCR2缺陷小鼠中,胸腺Sirpα(+) cDC亚群而非其他胸腺细胞成分适度减少,尤其是在血管周围区域。与此同时,这些小鼠在针对血源抗原的胸腺内阴性选择中表现出适度受损,摄取血源抗原的能力降低。鉴于其在胸腺皮质的定位,CD11c(+)B220(-)CD8α(-)Sirpα(+) cDCs在针对循环外周抗原的中枢耐受发展中可能具有独特作用,至少部分以CCR2依赖的方式发挥作用。

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