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序贯基因调控事件导致糖皮质激素诱导的 CEM 人白血病细胞凋亡:MAPK、MYC 和糖皮质激素途径的相互作用。

Sequential gene regulatory events leading to glucocorticoid-evoked apoptosis of CEM human leukemic cells:interactions of MAPK, MYC and glucocorticoid pathways.

机构信息

Dept. of Biochemistry & Molecular Biology, University of Texas Medical Branch, Galveston TX 77555, USA.

Dept. of Computer Science, Dept. of Physics, University of Guadalahara, Gaudalahara, Jalisco, Mexico.

出版信息

Mol Cell Endocrinol. 2018 Aug 15;471:118-130. doi: 10.1016/j.mce.2018.03.004. Epub 2018 Mar 26.

Abstract

Gene expression responses to glucocorticoid (GC) in the hours preceding onset of apoptosis were compared in three clones of human acute lymphoblastic leukemia CEM cells. Between 2 and 20h, all three clones showed increasing numbers of responding genes. Each clone had many unique responses, but the two responsive clones showed a group of responding genes in common, different from the resistant clone. MYC levels and the balance of activities between the three major groups of MAPKs are known important regulators of glucocorticoid-driven apoptosis in several lymphoid cell systems. Common to the two sensitive clones were changed transcript levels from genes that decrease amounts or activity of anti-apoptotic ERK/MAPK1 and JNK2/MAPK9, or of genes that increase activity of pro-apoptotic p38/MAPK14. Down-regulation of MYC and several MYC-regulated genes relevant to MAPKs also occurred in both sensitive clones. Transcriptomine comparisons revealed probable NOTCH-GC crosstalk in these cells.

摘要

在凋亡发生前的数小时内,比较了三种人急性淋巴细胞白血病 CEM 细胞克隆中糖皮质激素 (GC) 对基因表达的反应。在 2 至 20 小时之间,所有三种克隆都显示出越来越多的反应基因。每个克隆都有许多独特的反应,但两个有反应的克隆表现出一组共同的反应基因,与耐药克隆不同。MYC 水平和三种主要 MAPK 组之间的活性平衡是几种淋巴样细胞系统中糖皮质激素驱动的细胞凋亡的重要调节因子。在这两个敏感克隆中共同的是,抗凋亡 ERK/MAPK1 和 JNK2/MAPK9 的基因或增加促凋亡 p38/MAPK14 活性的基因的转录水平发生了变化。MYC 和与 MAPKs 相关的几个 MYC 调节基因在两个敏感克隆中也下调。转录组学比较揭示了这些细胞中可能存在 NOTCH-GC 串扰。

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