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淋巴造血 ETS 编码的建立揭示了霍奇金淋巴瘤中 ETS 基因的失调。

Establishment of the lymphoid ETS-code reveals deregulated ETS genes in Hodgkin lymphoma.

机构信息

Department of Human and Animal Cell Lines, Leibniz-Institute DSMZ, German Collection of Microorganisms and Cell Cultures, Braunschweig, Germany.

出版信息

PLoS One. 2023 Jul 10;18(7):e0288031. doi: 10.1371/journal.pone.0288031. eCollection 2023.

DOI:10.1371/journal.pone.0288031
PMID:37428779
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10332584/
Abstract

The human family of ETS transcription factors numbers 28 genes which control multiple aspects of development, notably the differentiation of blood and immune cells. Otherwise, aberrant expression of ETS genes is reportedly involved in forming leukemia and lymphoma. Here, we comprehensively mapped ETS gene activities in early hematopoiesis, lymphopoiesis and all mature types of lymphocytes using public datasets. We have termed the generated gene expression pattern lymphoid ETS-code. This code enabled identification of deregulated ETS genes in patients with lymphoid malignancies, revealing 12 aberrantly expressed members in Hodgkin lymphoma (HL). For one of these, ETS gene ETV3, expression in stem and progenitor cells in addition to that in developing and mature T-cells was mapped together with downregulation in B-cell differentiation. In contrast, subsets of HL patients aberrantly overexpressed ETV3, indicating oncogenic activity in this B-cell malignancy. Analysis of ETV3-overexpressing HL cell line SUP-HD1 demonstrated genomic duplication of the ETV3 locus at 1q23, GATA3 as mutual activator, and suppressed BMP-signalling as mutual downstream effect. Additional examination of the neighboring ETS genes ETS1 and FLI1 revealed physiological activities in B-cell development and aberrant downregulation in HL patient subsets. SUP-HD1 showed genomic loss on chromosome 11, del(11)(q22q25), targeting both ETS1 and FLI1, underlying their downregulation. Furthermore, in the same cell line we identified PBX1-mediated overexpression of RIOK2 which inhibited ETS1 and activated JAK2 expression. Collectively, we codified normal ETS gene activities in lymphopoiesis and identified oncogenic ETS members in HL.

摘要

ETS 转录因子家族有 28 个基因,这些基因控制着发育的多个方面,尤其是血液和免疫细胞的分化。此外,报道称 ETS 基因的异常表达与白血病和淋巴瘤的形成有关。在这里,我们使用公共数据集全面绘制了 ETS 基因在早期造血、淋巴生成和所有成熟类型淋巴细胞中的活性。我们将生成的基因表达模式命名为淋巴 ETS 编码。该编码可识别淋巴恶性肿瘤患者中失调的 ETS 基因,揭示霍奇金淋巴瘤 (HL) 中有 12 个异常表达的成员。其中一个 ETS 基因 ETV3,在干细胞和祖细胞中的表达以及在 T 细胞的发育和成熟中的表达都与 B 细胞分化中的下调有关。相比之下,HL 患者的亚群异常过表达 ETV3,表明在这种 B 细胞恶性肿瘤中存在致癌活性。对 ETV3 过表达 HL 细胞系 SUP-HD1 的分析表明,1q23 处 ETV3 基因座的基因组重复,GATA3 作为共同激活剂,以及 BMP 信号通路的共同下游效应被抑制。对相邻 ETS 基因 ETS1 和 FLI1 的进一步检查表明,它们在 B 细胞发育中具有生理活性,而在 HL 患者亚群中则异常下调。SUP-HD1 显示染色体 11 上的基因组缺失,del(11)(q22q25),靶向 ETS1 和 FLI1,导致它们的下调。此外,在同一细胞系中,我们发现 PBX1 介导的 RIOK2 过表达抑制 ETS1 并激活 JAK2 表达。总之,我们对淋巴发生中的正常 ETS 基因活性进行了编码,并确定了 HL 中的致癌 ETS 成员。

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