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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Analyzing primary Hodgkin and Reed-Sternberg cells to capture the molecular and cellular pathogenesis of classical Hodgkin lymphoma
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Analyzing primary Hodgkin and Reed-Sternberg cells to capture the molecular and cellular pathogenesis of classical Hodgkin lymphoma

机译:分析原发性霍奇金和Reed-Sternberg细胞以捕获经典霍奇金淋巴瘤的分子和细胞发病机制

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摘要

The pathogenesis of classical Hodgkin lymphoma (cHL), the most common lymphoma in the young, is still enigmatic, largely because its Hodgkin and Reed-Sternberg (HRS) tumor cells are rare in the involved lymph node and therefore difficult to analyze. Here, by overcoming this technical challenge and performing, for the first time, a genome-wide transcriptional analysis of microdissected HRS cells compared with other B-cell lymphomas, cHL lines, and normal B-cell subsets, we show that they differ extensively from the usually studied cHL cell lines, that the lost B-cell identity of cHLs is not linked to the acquisition of a plasma cell-like gene expression program, and that Epstein-Barr virus infection of HRS cells has a minor transcriptional influence on the established cHL clone. Moreover, although cHL appears a distinct lymphoma entity overall, HRS cells of its histologic subtypes diverged in their similarity to other related lymphomas. Unexpectedly, we identified 2 molecular subgroups of cHL associated with differential strengths of the transcription factor activity of the NOTCH1, MYC, and IRF4 proto-oncogenes. Finally, HRS cells display deregulated expression of several genes potentially highly relevant to lymphoma pathogenesis, including silencing of the apoptosis-inducer BIK and of INPP5D, an inhibitor of the PI3K-driven oncogenic pathway.
机译:经典的霍奇金淋巴瘤(cHL)是年轻人中最常见的淋巴瘤的发病机制,目前仍是一个谜,主要是因为其所感染的淋巴结中少见其霍奇金和里德-斯特恩伯格(HRS)肿瘤细胞。在这里,通过克服这一技术挑战并首次与其他B细胞淋巴瘤,cHL系和正常B细胞​​亚群相比,对显微解剖的HRS细胞进行了全基因组转录分析,我们发现它们与通常研究过的cHL细胞系,即失去的cHLs B细胞身份与获得浆细胞样基因表达程序无关,并且HRS细胞的爱泼斯坦-巴尔病毒感染对已建立的细胞有轻微的转录影响cHL克隆。此外,尽管cHL总体上表现出明显的淋巴瘤实体,但是其组织学亚型的HRS细胞在与其他相关淋巴瘤的相似性上却有所不同。出乎意料的是,我们确定了cHL的2个分子亚组,它们与NOTCH1,MYC和IRF4原癌基因的转录因子活性的不同强度有关。最后,HRS细胞显示出与淋巴瘤发病机制高度相关的几个基因的表达失调,包括沉默凋亡诱导物BIK和PI3K驱动致癌途径的抑制剂INPP5D。

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