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淋巴间质细胞产生的氧化固醇梯度引导体液免疫应答中活化 B 细胞的迁移

Oxysterol gradient generation by lymphoid stromal cells guides activated B cell movement during humoral responses.

机构信息

Howard Hughes Medical Institute and Department of Microbiology and Immunology, University of California, San Francisco, CA 94143, USA.

出版信息

Immunity. 2012 Sep 21;37(3):535-48. doi: 10.1016/j.immuni.2012.06.015.

Abstract

7α,25-dihydroxycholesterol (7α,25-OHC) is a ligand for the G protein-coupled receptor EBI2; however, the cellular sources of this oxysterol are undefined. 7α,25-OHC is synthesized from cholesterol by the stepwise actions of two enzymes, CH25H and CYP7B1, and is metabolized to a 3-oxo derivative by HSD3B7. We showed that all three enzymes control EBI2 ligand concentration in lymphoid tissues. Lymphoid stromal cells were the main CH25H- and CYP7B1-expressing cells required for positioning of B cells, and they also mediated 7α,25-OHC inactivation. CH25H and CYP7B1 were abundant at the follicle perimeter, whereas CH25H expression by follicular dendritic cells was repressed. CYP7B1, CH25H, and HSD3B7 deficiencies each resulted in defective T cell-dependent plasma cell responses. These findings establish that CYP7B1 and HSD3B7, as well as CH25H, have essential roles in controlling oxysterol production in lymphoid tissues, and they suggest that differential enzyme expression in stromal cell subsets establishes 7α,25-OHC gradients required for B cell responses.

摘要

7α,25-二羟胆固醇(7α,25-OHC)是 G 蛋白偶联受体 EBI2 的配体;然而,这种氧化固醇的细胞来源尚未确定。7α,25-OHC 是由胆固醇通过两步酶反应合成的,即 CH25H 和 CYP7B1,然后被 HSD3B7 代谢为 3-酮衍生物。我们表明,这三种酶都控制着淋巴组织中 EBI2 配体的浓度。淋巴基质细胞是定位 B 细胞所必需的主要 CH25H 和 CYP7B1 表达细胞,它们还介导 7α,25-OHC 的失活。CH25H 和 CYP7B1 在滤泡周边丰富表达,而滤泡树突状细胞的 CH25H 表达受到抑制。CYP7B1、CH25H 和 HSD3B7 的缺乏都导致 T 细胞依赖性浆细胞反应缺陷。这些发现确立了 CYP7B1 和 HSD3B7 以及 CH25H 在控制淋巴组织中氧化固醇产生方面的重要作用,并表明基质细胞亚群中差异的酶表达建立了 B 细胞反应所需的 7α,25-OHC 梯度。

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