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B-cell signaling in persistent polyclonal B lymphocytosis (PPBL)

机译:持续性多克隆B淋巴细胞增多症(PPBL)中的B细胞信号传导

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Persistent polyclonal B lymphocytosis (PPBL) is a benign hematological disorder characterized by a selective expansion of circulating polyclonal marginal zone (MZ)-like B cells. Previous reports demonstrated that cases of PPBL showed poor activation, proliferation and survival of B cells in vitro, yet the underlying defect remains unknown. Here we report for the first time an attenuated activation of the canonical NF-kappa B (nuclear factor of kappa light polypeptide gene enhancer in B cells) and mitogen-activated protein kinase/extracellular signal-regulated kinase pathway after CD40 stimulation. This defect was selective, as alternative NF-kappa B signaling after CD40 stimulation and both B-cell receptor-and Toll-like receptor 9-mediated activation remained unaffected. Reduced canonical NF-kappa B activation resulted in decreased I kappa B alpha and CD40 expression in resting cells. In PPBL patients, expression of Bcl-xL in MZ-like B cells did not increase upon activation, consistent with the high apoptosis rates of PPBL-derived B cells that were observed in vitro. The B-cell phenotype of mice with selective knockouts of early components of the CD40 signaling pathway resembles PPBL, but sequencing corresponding genes in sorted MZ-like B cells of PPBL patients did not reveal relevant genetic alterations. Nevertheless, the frequently observed mutations in early signaling components of the NF-kappa B pathway in MZ lymphomas underline the relevance of our findings for the pathogenesis of PPBL.
机译:持久性多克隆B淋巴细胞增多症(PPBL)是一种良性血液病,其特征在于循环多克隆边缘区(MZ)样B细胞的选择性扩增。先前的报道表明,PPBL病例在体外显示出不良的B细胞活化,增殖和存活,但潜在的缺陷仍然未知。在这里,我们首次报告经典的NF-κB(B细胞中Kappa轻型多肽基因增强子的核因子)和CD40刺激后丝裂原激活的蛋白激酶/细胞外信号调节激酶途径的减弱激活。此缺陷是选择性的,因为CD40刺激后替代性NF-κB信号传导以及B细胞受体和Toll样受体9介导的激活均不受影响。减少的规范性NF-κB活化导致静息细胞中的IκBalpha和CD40表达降低。在PPBL患者中,激活后MZ样B细胞中Bcl-xL的表达没有增加,这与体外观察到的PPBL衍生的B细胞的高凋亡率一致。选择性敲除CD40信号通路早期成分的小鼠的B细胞表型与PPBL类似,但对PPBL患者分选的MZ样B细胞中的相应基因进行测序并没有发现相关的遗传改变。然而,在MZ淋巴瘤中NF-κB通路的早期信号成分中经常观察到的突变强调了我们的发现与PPBL发病机制的相关性。

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