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转录因子Foxo1可控制生发中心B细胞在T细胞辅助下的增殖。

The transcription factor Foxo1 controls germinal center B cell proliferation in response to T cell help.

作者信息

Inoue Takeshi, Shinnakasu Ryo, Ise Wataru, Kawai Chie, Egawa Takeshi, Kurosaki Tomohiro

机构信息

Laboratory of Lymphocyte Differentiation, WPI Immunology Frontier Research Center, Osaka University, Osaka 565-0871, Japan.

Laboratory for Lymphocyte Differentiation, RIKEN Center for Integrative Medical Sciences, Yokohama, Kanagawa 230-0045, Japan.

出版信息

J Exp Med. 2017 Apr 3;214(4):1181-1198. doi: 10.1084/jem.20161263. Epub 2017 Mar 28.

Abstract

Germinal center (GC) B cells cycle between two states, the light zone (LZ) and the dark zone (DZ), and in the latter they proliferate and hypermutate their immunoglobulin genes. How this functional transition takes place is still controversial. In this study, we demonstrate that ablation of Foxo1 after GC development led to the loss of the DZ GC B cells and disruption of the GC architecture, which is consistent with recent studies. Mechanistically, even upon provision of adequate T cell help, Foxo1-deficient GC B cells showed less proliferative expansion than controls. Moreover, we found that the transcription factor BATF was transiently induced in LZ GC B cells in a Foxo1-dependent manner and that deletion of BATF similarly led to GC disruption. Thus, our results are consistent with a model where the switch from the LZ to the DZ is triggered after receipt of T cell help, and suggest that Foxo1-mediated BATF up-regulation is at least partly involved in this switch.

摘要

生发中心(GC)B细胞在两个状态之间循环,即轻区(LZ)和暗区(DZ),在暗区中它们增殖并使其免疫球蛋白基因发生高突变。这种功能转变是如何发生的仍然存在争议。在本研究中,我们证明GC发育后Foxo1的缺失导致DZ GC B细胞的丧失和GC结构的破坏,这与最近的研究一致。从机制上讲,即使提供足够的T细胞辅助,Foxo1缺陷的GC B细胞的增殖扩展也比对照少。此外,我们发现转录因子BATF在LZ GC B细胞中以Foxo1依赖的方式被短暂诱导,并且BATF的缺失同样导致GC破坏。因此,我们的结果与一个模型一致,即从LZ到DZ的转变是在接受T细胞辅助后触发的,并且表明Foxo1介导的BATF上调至少部分参与了这种转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e87/5379976/1563457181e4/JEM_20161263_Fig1.jpg

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