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破坏线粒体铜分布抑制白血病干细胞自我更新。

Disrupting Mitochondrial Copper Distribution Inhibits Leukemic Stem Cell Self-Renewal.

机构信息

Princess Margaret Cancer Centre, University Health Network, Toronto, ON, Canada.

The Donnelly Centre, University of Toronto, Toronto, ON, Canada.

出版信息

Cell Stem Cell. 2020 Jun 4;26(6):926-937.e10. doi: 10.1016/j.stem.2020.04.010. Epub 2020 May 15.

Abstract

Leukemic stem cells (LSCs) rely on oxidative metabolism and are differentially sensitive to targeting mitochondrial pathways, which spares normal hematopoietic cells. A subset of mitochondrial proteins is folded in the intermembrane space via the mitochondrial intermembrane assembly (MIA) pathway. We found increased mRNA expression of MIA pathway substrates in acute myeloid leukemia (AML) stem cells. Therefore, we evaluated the effects of inhibiting this pathway in AML. Genetic and chemical inhibition of ALR reduces AML growth and viability, disrupts LSC self-renewal, and induces their differentiation. ALR inhibition preferentially decreases its substrate COX17, a mitochondrial copper chaperone, and knockdown of COX17 phenocopies ALR loss. Inhibiting ALR and COX17 increases mitochondrial copper levels which in turn inhibit S-adenosylhomocysteine hydrolase (SAHH) and lower levels of S-adenosylmethionine (SAM), DNA methylation, and chromatin accessibility to lower LSC viability. These results provide insight into mechanisms through which mitochondrial copper controls epigenetic status and viability of LSCs.

摘要

白血病干细胞 (LSCs) 依赖氧化代谢,并且对靶向线粒体途径具有不同的敏感性,这可以使正常造血细胞免受影响。一部分线粒体蛋白通过线粒体膜间组装 (MIA) 途径在膜间空间中折叠。我们发现急性髓系白血病 (AML) 干细胞中 MIA 途径底物的 mRNA 表达增加。因此,我们评估了抑制该途径对 AML 的影响。ALR 的遗传和化学抑制可降低 AML 的生长和活力,破坏 LSC 的自我更新,并诱导其分化。ALR 抑制优先降低其底物 COX17,一种线粒体铜伴侣,而 COX17 的敲低可模拟 ALR 的缺失。抑制 ALR 和 COX17 会增加线粒体铜水平,从而抑制 S-腺苷同型半胱氨酸水解酶 (SAHH),降低 S-腺苷甲硫氨酸 (SAM)、DNA 甲基化和染色质可及性,从而降低 LSC 的活力。这些结果提供了有关线粒体铜控制 LSC 表观遗传状态和活力的机制的见解。

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