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典型的核因子-κB活性对B细胞发育并非必需,它可替代B细胞活化因子受体信号,并在活化后促进B细胞增殖。

Canonical NF-kappaB activity, dispensable for B cell development, replaces BAFF-receptor signals and promotes B cell proliferation upon activation.

作者信息

Sasaki Yoshiteru, Derudder Emmanuel, Hobeika Elias, Pelanda Roberta, Reth Michael, Rajewsky Klaus, Schmidt-Supprian Marc

机构信息

The CBR Institute for Biomedical Research, Harvard Medical School, 200 Longwood Avenue, Boston, Massachusetts 02115.

The CBR Institute for Biomedical Research, Harvard Medical School, 200 Longwood Avenue, Boston, Massachusetts 02115.

出版信息

Immunity. 2006 Jun;24(6):729-739. doi: 10.1016/j.immuni.2006.04.005.

Abstract

The maintenance of mature B cells hinges on signals emitted from the BAFF-R cell-surface receptor, but the nature of these signals is incompletely understood. Inhibition of canonical NF-kappaB transcription factor activity through ablation of the essential scaffold protein NEMO arrests B cell development at the same stage as BAFF-R deficiency. Correspondingly, activation of this pathway by constitutively active IkappaB Kinase2 renders B cell survival independent of BAFF-R:BAFF interactions and prevents proapoptotic PKCdelta nuclear translocation. In addition, canonical NF-kappaB activity mediates differentiation and proper localization of follicular and marginal zone B cells in the absence of BAFF-R, but not CD19. By replacing BAFF-R signals, constitutive canonical NF-kappaB signaling, a hallmark of various B cell lymphomas, causes accumulation of resting B cells and promotes their proliferation and survival upon activation, but does not per se induce lymphomagenesis. Therefore, canonical NF-kappaB activity can substitute for BAFF-R signals in B cell development and pathogenesis.

摘要

成熟B细胞的维持依赖于BAFF-R细胞表面受体发出的信号,但其信号本质尚未完全明确。通过去除关键支架蛋白NEMO抑制经典NF-κB转录因子活性,会使B细胞发育停滞于与BAFF-R缺陷相同的阶段。相应地,组成型活性IκB激酶2激活该信号通路,可使B细胞存活不依赖于BAFF-R与BAFF的相互作用,并阻止促凋亡的PKCδ核转位。此外,在缺乏BAFF-R而非CD19的情况下,经典NF-κB活性介导滤泡性和边缘区B细胞的分化及正常定位。通过替代BAFF-R信号,组成型经典NF-κB信号传导(各种B细胞淋巴瘤的一个标志)会导致静息B细胞积累,并在激活后促进其增殖和存活,但本身不会诱发淋巴瘤发生。因此,经典NF-κB活性在B细胞发育和发病机制中可替代BAFF-R信号。

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