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Cell Rep. 2013 Nov 27;5(4):1022-35. doi: 10.1016/j.celrep.2013.10.022. Epub 2013 Nov 14.
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Rgs13 constrains early B cell responses and limits germinal center sizes.Rgs13 限制早期 B 细胞反应并限制生发中心的大小。
PLoS One. 2013;8(3):e60139. doi: 10.1371/journal.pone.0060139. Epub 2013 Mar 22.
3
IKKα-mediated signaling circuitry regulates early B lymphopoiesis during hematopoiesis.IKKα 介导的信号通路调节造血过程中的早期 B 淋巴细胞发生。
Blood. 2012 Jun 7;119(23):5467-77. doi: 10.1182/blood-2012-01-401547. Epub 2012 Apr 27.
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IFN regulatory factor 8 restricts the size of the marginal zone and follicular B cell pools.IFN 调节因子 8 限制边缘区和滤泡 B 细胞池的大小。
J Immunol. 2011 Feb 1;186(3):1458-66. doi: 10.4049/jimmunol.1001950. Epub 2010 Dec 22.
5
The transmembrane activator TACI triggers immunoglobulin class switching by activating B cells through the adaptor MyD88.跨膜激活剂 TACI 通过衔接蛋白 MyD88 激活 B 细胞,从而诱导免疫球蛋白类别转换。
Nat Immunol. 2010 Sep;11(9):836-45. doi: 10.1038/ni.1914. Epub 2010 Aug 1.
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The follicular versus marginal zone B lymphocyte cell fate decision.滤泡性与边缘区B淋巴细胞的细胞命运抉择
Nat Rev Immunol. 2009 Nov;9(11):767-77. doi: 10.1038/nri2656.
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Enhanced B cell activation in the absence of CD81.缺乏 CD81 时增强的 B 细胞活化。
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8
NK T cells provide lipid antigen-specific cognate help for B cells.自然杀伤T细胞为B细胞提供脂质抗原特异性同源辅助。
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9
Lack of nuclear factor-kappa B2/p100 causes a RelB-dependent block in early B lymphopoiesis.核因子-κB2/p100的缺失导致早期B淋巴细胞生成中依赖RelB的阻滞。
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10
Follicular shuttling of marginal zone B cells facilitates antigen transport.边缘区B细胞的滤泡穿梭促进抗原转运。
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IKKα 缺乏破坏边缘区和滤泡 B 细胞的发育。

IKKα deficiency disrupts the development of marginal zone and follicular B cells.

机构信息

Division of Hematology/Oncology, Department of Medicine, Tufts University School of Medicine, Boston, MA, USA.

Cancer and Inflammation Program, Center for Cancer Research, National Cancer Institute, National Institute of Health, Frederick, MD, USA.

出版信息

Genes Immun. 2019 Mar;20(3):224-233. doi: 10.1038/s41435-018-0025-0. Epub 2018 May 8.

DOI:10.1038/s41435-018-0025-0
PMID:29740197
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8191388/
Abstract

Only few genes have been confidently identified to be involved in the Follicular (FO) and Marginal Zone (MZ) B cell differentiation, migration, and retention in the periphery. Our group previously observed that IKKα kinase inactive mutant mice IKKα have significantly lower number of MZ B cells whereas FO B cell numbers appeared relatively normal. Because kinase dead IKKα can retain some of its biological functions that may interfere in revealing its actual role in the MZ and FO B cell differentiation. Therefore, in the current study, we genetically deleted IKKα from the pro-B cell lineage that revealed novel functions of IKKα in the MZ and FO B lymphocyte development. The loss of IKKα produces a significant decline in the percentage of immature B lymphocytes, mature marginal zone B cells, and follicular B cells along with a severe disruption of splenic architecture of marginal and follicular zones. IKKα deficiency affect the recirculation of mature B cells through bone marrow. A transplant of IKKα knockout fetal liver cells into Rag mice shows a significant reduction compared to control in the B cells recirculating through bone marrow. To reveal the genes important in the B cell migration, a high throughput gene expression analysis was performed on the IKKα deficient recirculating mature B cells (B220IgM). That revealed significant changes in the expression of genes involved in the B lymphocyte survival, homing and migration. And several among those genes identified belong to G protein family. Taken together, this study demonstrates that IKKα forms a vial axis controlling the genes involved in MZ and FO B cell differentiation and migration.

摘要

仅有少数基因被确认参与滤泡 (FO) 和边缘区 (MZ) B 细胞在外周的分化、迁移和保留。我们的研究小组之前观察到,IKKα 激酶无活性突变体 IKKα 小鼠的 MZ B 细胞数量明显减少,而 FO B 细胞数量似乎相对正常。由于激酶失活的 IKKα 可以保留其部分生物学功能,这可能会干扰揭示其在 MZ 和 FO B 细胞分化中的实际作用。因此,在本研究中,我们从前 B 细胞谱系中基因敲除了 IKKα,揭示了 IKKα 在 MZ 和 FO B 淋巴细胞发育中的新功能。IKKα 的缺失导致未成熟 B 淋巴细胞、成熟边缘区 B 细胞和滤泡 B 细胞的比例显著下降,同时边缘区和滤泡区的脾脏结构严重破坏。IKKα 缺乏会影响成熟 B 细胞在骨髓中的再循环。将 IKKα 敲除的胎肝细胞移植到 Rag 小鼠中,与对照组相比,通过骨髓再循环的 B 细胞数量显著减少。为了揭示参与 B 细胞迁移的重要基因,我们对 IKKα 缺陷的再循环成熟 B 细胞 (B220IgM) 进行了高通量基因表达分析。结果显示,参与 B 淋巴细胞存活、归巢和迁移的基因表达发生了显著变化。其中一些基因属于 G 蛋白家族。总之,这项研究表明,IKKα 形成了一个关键轴,控制着参与 MZ 和 FO B 细胞分化和迁移的基因。