首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Proximal events in 7,12-dimethylbenz(a)anthracene-induced, stromal cell-dependent bone marrow B cell apoptosis: stromal cell-B cell communication and apoptosis signaling.
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Proximal events in 7,12-dimethylbenz(a)anthracene-induced, stromal cell-dependent bone marrow B cell apoptosis: stromal cell-B cell communication and apoptosis signaling.

机译:在7,12-二甲基苯并(a)蒽诱导的基质细胞依赖性骨髓B细胞凋亡中的近端事件:基质细胞B细胞通讯和凋亡信号传导。

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摘要

Intercellular communication is an essential process in stimulating lymphocyte development and in activating and shaping an immune response. B cell development requires cell-to-cell contact with and cytokine production by bone marrow stromal cells. However, this intimate relationship also may be responsible for the transfer of death-inducing molecules to the B cells. 7,12-Dimethylbenz[a]anthracene (DMBA), a prototypical polycyclic aromatic hydrocarbon, activates caspase-3 in pro/pre-B cells in a bone marrow stromal cell-dependent manner, resulting in apoptosis. These studies were designed to examine the hypothesis that an intrinsic apoptotic pathway is activated by DMBA and that the ultimate death signal is a DMBA metabolite generated by the stromal cells and transferred to the B cells. Although a loss of mitochondrial membrane potential did not occur in the DMBA/stromal cell-induced pathway, cytochrome c release was stimulated in B cells. Caspase-9 was activated, and formation of the apoptosome was required to support apoptosis, as demonstrated by the suppression of death in Apaf-1(fog) mutant pro-B cells. Investigation of signaling upstream of the mitochondria demonstrated an essential role for p53. Furthermore, DMBA-3,4-dihydrodiol-1,2-epoxide, a DNA-reactive metabolite of DMBA, was sufficient to upregulate p53, induce caspase-9 cleavage, and initiate B cell apoptosis in the absence of stromal cells, suggesting that production of this metabolite by the stromal cells and transfer to the B cells are proximal events in triggering apoptosis. Indeed, we provide evidence that metabolite transfer from bone marrow stromal cells occurs through membrane exchange, which may represent a novel communication mechanism between developing B cells and stromal cells.
机译:细胞间通讯是刺激淋巴细胞发育以及激活和形成免疫应答的重要过程。 B细胞发育需要与骨髓基质细胞进行细胞间接触并产生细胞因子。但是,这种亲密关系也可能是导致死亡的分子转移到B细胞的原因。典型的多环芳香烃7,12-二甲基苯并[a]蒽(DMBA)以骨髓基质细胞依赖性方式激活pro / pre-B细胞中的caspase-3,从而导致细胞凋亡。这些研究旨在检查以下假设:固有的凋亡途径被DMBA激活,并且最终死亡信号是由基质细胞产生并转移到B细胞的DMBA代谢产物。尽管在DMBA /基质细胞诱导的途径中并未发生线粒体膜电位的丧失,但在B细胞中刺激了细胞色素c的释放。 Caspase-9被激活,并且需要凋亡小体的形成来支持细胞凋亡,正如Apaf-1(fog)突变pro-B细胞中死亡的抑制所证明的。线粒体上游信号的研究证明了p53的重要作用。此外,在没有基质细胞的情况下,DMBA-3,4-二氢二醇-1,2-环氧化物DMBA能够与DNA发生反应,足以上调p53,诱导caspase-9裂解并启动B细胞凋亡。基质细胞产生这种代谢产物并转移至B细胞是触发细胞凋亡的近端事件。实际上,我们提供的证据表明,从骨髓基质细胞的代谢物转移是通过膜交换发生的,这可能代表了发育中的B细胞与基质细胞之间的新型通信机制。

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