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Developments in Burkitt’s lymphoma: novel cooperations in oncogenic MYC signaling

机译:伯基特淋巴瘤的发展:致癌性MYC信号的新型合作

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摘要

Burkitt’s lymphoma (BL) is an aggressive disorder associated with extremely high rates of cell proliferation tempered by high levels of apoptosis. Despite the high levels of cell death, the net effect is one of rapid tumor growth. The tumor arises within the germinal centers of secondary lymphoid tissues and is identifiable by translocation of the c-MYC gene into the immunoglobulin gene loci, resulting in deregulation of the proto-oncogene. Many of the major players involved in determining the development of BL have been characterized in human BL cell lines or in mouse models of MYC-driven lymphomagenesis. Both systems have been useful so far in characterizing the role of tumor suppressor genes (for example, p53), prosurvival signaling pathways, and members of the B-cell lymphoma-2 family of apoptosis regulators in determining the fate of c-MYC overexpressing B-cells, and ultimately in regulating lymphoma development. Signaling through phosphoinositide (PI)3-kinase stands out as being critical for BL cell survival. Recurrent mutations in ID3 or TCF3 (E2A) that promote signaling through PI3-kinase have recently been identified in human BL samples, and new therapeutic strategies based on coordinately targeting both the prosurvival factor, B-cell lymphoma-XL, and the PI3-kinase/AKT/mammalian target of rapamycin (mTOR) signaling pathway to synergistically induced BL apoptosis have been proposed. Now, engineering both constitutive c-MYC expression and PI3-kinase activity, specifically in murine B-cells undergoing the germinal center reaction, has revealed that there is synergistic cooperation between c-MYC and PI3-kinase during BL development. The resulting tumors phenocopy the human malignancy, and acquire tertiary mutations also present in human tumors. This model may, therefore, prove useful in further studies to identify functionally relevant mutational events necessary for BL pathogenesis. This review discusses these cooperating interactions, the possible influence of BL tumor-associated viruses, and highlights potential new opportunities for therapeutic intervention.
机译:伯基特淋巴瘤(BL)是一种侵袭性疾病,与高水平的细胞凋亡导致的极高的细胞增殖速率有关。尽管细胞死亡水平很高,但净效应却是肿瘤快速生长的一种。肿瘤出现在次级淋巴组织的生发中心,可通过将c-MYC基因易位到免疫球蛋白基因位点中来鉴定,从而导致原癌基因失调。在人类BL细胞系或MYC驱动的淋巴瘤发生的小鼠模型中,许多与确定BL的发育有关的主要参与者已被表征。迄今为止,这两种系统在确定肿瘤抑制基因(例如p53),生存信号通路和B细胞淋巴瘤2细胞凋亡调节因子家族成员在确定c-MYC过表达B的命运方面的作用都是有用的细胞,并最终调节淋巴瘤的发展。通过磷酸肌醇(PI)3-激酶的信号转导对于BL细胞存活至关重要。最近在人类BL样品中发现了ID3或TCF3(E2A)的复发突变,这些突变通过PI3-激酶促进信号传导,并且基于协同靶向生存因子,B细胞淋巴瘤-XL和PI3-激酶的新治疗策略。 / AKT /哺乳动物雷帕霉素(mTOR)信号通路的目标,以协同诱导BL细胞凋亡。现在,工程本构c-MYC表达和PI3-激酶活性,特别是在经历生发中心反应的鼠B细胞中,揭示了BL发育过程中c-MYC和PI3-激酶之间存在协同作用。由此产生的肿瘤表型复制了人类的恶性肿瘤,并获得了人类肿瘤中也存在的三级突变。因此,该模型在进一步的研究中可能很有用,以确定BL发病机理所必需的功能相关突变事件。这篇综述讨论了这些合作的相互作用,BL肿瘤相关病毒的可能影响,并强调了治疗干预的潜在新机会。

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