Survey of activation-induced genome architecture reveals a novel enhancer of Myc

IF 3.2 4区 医学 Q3 CELL BIOLOGY
Wing Fuk Chan, Hannah D Coughlan, Michelle Ruhle, Nadia Iannarella, Carolina Alvarado, Joanna R Groom, Christine R Keenan, Andrew J Kueh, Adam K Wheatley, Gordon K Smyth, Rhys S Allan, Timothy M Johanson
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引用次数: 0

Abstract

The transcription factor Myc is critically important in driving cell proliferation, a function that is frequently dysregulated in cancer. To avoid this dysregulation Myc is tightly controlled by numerous layers of regulation. One such layer is the use of distal regulatory enhancers to drive Myc expression. Here, using chromosome conformation capture to examine B cells of the immune system in the first hours after their activation, we reveal a previously unidentified enhancer of Myc. The interactivity of this enhancer coincides with a dramatic, but discrete, spike in Myc expression 3 h post-activation. However, genetic deletion of this region, has little impact on Myc expression, Myc protein level or in vitro and in vivo cell proliferation. Examination of the enhancer deleted regulatory landscape suggests that enhancer redundancy likely sustains Myc expression. This work highlights not only the importance of temporally examining enhancers, but also the complexity and dynamics of the regulation of critical genes such as Myc.

Abstract Image

激活诱导的基因组结构研究揭示了一种新的Myc增强子
转录因子Myc在驱动细胞增殖中至关重要,这一功能在癌症中经常失调。为了避免这种失调,Myc受到多层调控的严格控制。其中一层是使用远端调控增强子来驱动Myc表达。在这里,利用染色体构象捕获在B细胞激活后的最初几个小时内检测免疫系统的B细胞,我们揭示了一种以前未识别的Myc增强子。这种增强子的相互作用与激活后3小时Myc表达的戏剧性但离散的峰值相吻合。然而,该区域的基因缺失,对Myc表达、Myc蛋白水平或体外和体内细胞增殖影响不大。对增强子缺失调控环境的检查表明,增强子冗余可能维持Myc表达。这项工作不仅强调了临时检查增强子的重要性,而且还强调了关键基因(如Myc)调控的复杂性和动态性。
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来源期刊
Immunology & Cell Biology
Immunology & Cell Biology 医学-免疫学
CiteScore
7.50
自引率
2.50%
发文量
98
审稿时长
4-8 weeks
期刊介绍: The Australasian Society for Immunology Incorporated (ASI) was created by the amalgamation in 1991 of the Australian Society for Immunology, formed in 1970, and the New Zealand Society for Immunology, formed in 1975. The aim of the Society is to encourage and support the discipline of immunology in the Australasian region. It is a broadly based Society, embracing clinical and experimental, cellular and molecular immunology in humans and animals. The Society provides a network for the exchange of information and for collaboration within Australia, New Zealand and overseas. ASI members have been prominent in advancing biological and medical research worldwide. We seek to encourage the study of immunology in Australia and New Zealand and are active in introducing young scientists to the discipline.
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