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MBD3/NuRD 缺失与 KDM6A 程序共同促进人类急性髓系白血病中 DOCK5/8 的表达和 Rac GTPase 的激活。

MBD3/NuRD loss participates with KDM6A program to promote DOCK5/8 expression and Rac GTPase activation in human acute myeloid leukemia.

机构信息

Stem Cell and Leukemia Laboratory, Council of Scientific and Industrial Research (CSIR)-Indian Institute of Chemical Biology (IICB), Translational Research Unit of Excellence (TRUE), Salt Lake, Kolkata, West Bengal, India.

Cancer Biology and Inflammatory Disorder Division, CSIR-IICB, Jadavpur, Kolkata, West Bengal, India; and.

出版信息

FASEB J. 2019 Apr;33(4):5268-5286. doi: 10.1096/fj.201801035R. Epub 2019 Jan 22.

Abstract

Cancer genome sequencing studies have focused on identifying oncogenic mutations. However, mutational profiling alone may not always help dissect underlying epigenetic dependencies in tumorigenesis. Nucleosome remodeling and deacetylase (NuRD) is an ATP-dependent chromatin remodeling complex that regulates transcriptional architecture and is involved in cell fate commitment. We demonstrate that loss of MBD3, an important NuRD scaffold, in human primary acute myeloid leukemia (AML) cells associates with leukemic NuRD. Interestingly, CHD4, an intact ATPase subunit of leukemic NuRD, coimmunoprecipitates and participates with H3K27Me3/2-demethylase KDM6A to induce expression of atypical guanine nucleotide exchange factors, dedicator of cytokinesis (DOCK) 5 and 8 (DOCK5/8), promoting Rac GTPase signaling. Mechanistically, MBD3 deficiency caused loss of histone deacytelase 1 occupancy with a corresponding increase in KDM6A, CBP, and H3K27Ac on DOCK5/8 loci, leading to derepression of gene expression. Importantly, the Cancer Genome Atlas AML cohort reveals that DOCK5/ 8 levels are correlated with MBD3 and KDM6A, and DOCK5/ 8 expression is significantly increased in patients who are MBD3 low and KDM6A high with a poor survival. In addition, pharmacological inhibition of DOCK signaling selectively attenuates AML cell survival. Because MBD3 and KDM6A have been implicated in metastasis, our results may suggest a general phenomenon in tumorigenesis. Collectively, these findings provide evidence for MBD3-deficient NuRD in leukemia pathobiology and inform a novel epistasis between NuRD and KDM6A toward maintenance of oncogenic gene expression in AML.-Biswas, M., Chatterjee, S. S., Boila, L. D., Chakraborty, S., Banerjee, D., Sengupta, A. MBD3/NuRD loss participates with KDM6A program to promote DOCK5/8 expression and Rac GTPase activation in human acute myeloid leukemia.

摘要

癌症基因组测序研究一直致力于鉴定致癌突变。然而,仅突变分析可能并不总是有助于剖析肿瘤发生中的潜在表观遗传依赖性。核小体重塑和去乙酰化酶 (NuRD) 是一种依赖于 ATP 的染色质重塑复合物,可调节转录结构,并参与细胞命运决定。我们证明,人原发性急性髓系白血病 (AML) 细胞中重要的 NuRD 支架 MBD3 的缺失与白血病 NuRD 相关。有趣的是,白血病 NuRD 中完整的 ATP 酶亚基 CHD4 与 H3K27Me3/2 去甲基化酶 KDM6A 共免疫沉淀,并参与诱导表达非典型鸟嘌呤核苷酸交换因子、胞质分裂 dedicator (DOCK) 5 和 8 (DOCK5/8),从而促进 Rac GTPase 信号转导。从机制上讲,MBD3 缺乏导致组蛋白去乙酰化酶 1 占据减少,相应的 KDM6A、CBP 和 H3K27Ac 在 DOCK5/8 基因座上增加,导致基因表达去抑制。重要的是,癌症基因组图谱 AML 队列表明,DOCK5/8 水平与 MBD3 和 KDM6A 相关,并且在 MBD3 低和 KDM6A 高的患者中,DOCK5/8 表达显著增加,生存不良。此外,DOCK 信号的药理学抑制选择性减弱 AML 细胞存活。由于 MBD3 和 KDM6A 已被牵连到转移中,我们的结果可能表明肿瘤发生中的一种普遍现象。总之,这些发现为白血病发病机制中 MBD3 缺陷型 NuRD 提供了证据,并为 NuRD 和 KDM6A 之间的新的上位效应提供了依据,以维持 AML 中的致癌基因表达。

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