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SAM50 的缺失通过干扰线粒体功能特异性靶向表达 BCR-ABL 的白血病干细胞和祖细胞。

Depletion of SAM50 Specifically Targets BCR-ABL-Expressing Leukemic Stem and Progenitor Cells by Interfering with Mitochondrial Functions.

作者信息

Capala Marta E, Pruis Maurien, Vellenga Edo, Schuringa Jan Jacob

机构信息

Department of Experimental Hematology, Cancer Research Center Groningen (CRCG), University Medical Center Groningen, University of Groningen , Groningen, The Netherlands .

出版信息

Stem Cells Dev. 2016 Mar 1;25(5):427-37. doi: 10.1089/scd.2015.0151. Epub 2016 Feb 8.

Abstract

A high proliferation rate of malignant cells requires an increased energy production, both by anaerobic glucose metabolism and mitochondrial respiration. Moreover, increased levels of mitochondria-produced reactive oxygen species (ROS) promote survival of transformed cells and contribute to the disease progression both in solid tumors and leukemia. Consequently, interfering with mitochondrial metabolism has been used as a strategy to specifically target leukemic cells. SAM50 is a mitochondrial outer membrane protein involved in the formation of mitochondrial intermembrane space bridging (MIB) complex. Although the importance of SAM50 in maintaining MIB integrity and in the assembly of mitochondrial respiratory chain complexes has been described, its specific role in the normal and leukemic hematopoietic cells remains unknown. We observed that human leukemic cells display a specific dependency on SAM50 expression, as downregulation of SAM50 in BCR-ABL-expressing, but not normal CD34(+) human hematopoietic stem and progenitor cells (HSPCs) caused a significant decrease in growth, colony formation, and replating capacity. Mitochondrial functions of BCR-ABL-expressing HSPCs were compromised, as seen by a decreased mitochondrial membrane potential and respiration. This effect of SAM50 downregulation was recapitulated in normal HSPCs exposed to cytokine-rich culture conditions that stimulate proliferation. Both oncogene-transduced and cytokine-stimulated HSPCs showed increased mitochondrial membrane potential and increased ROS levels compared to their normal counterparts. Therefore, we postulate that human leukemic HSPCs are highly dependent on the proper functioning of mitochondria and that disruption of mitochondrial integrity may aid in targeting leukemic cells.

摘要

恶性细胞的高增殖率需要通过无氧糖代谢和线粒体呼吸作用增加能量生成。此外,线粒体产生的活性氧(ROS)水平升高可促进转化细胞的存活,并在实体瘤和白血病中促进疾病进展。因此,干扰线粒体代谢已被用作特异性靶向白血病细胞的策略。SAM50是一种线粒体外膜蛋白,参与线粒体膜间隙桥接(MIB)复合物的形成。尽管已经描述了SAM50在维持MIB完整性和线粒体呼吸链复合物组装中的重要性,但其在正常和白血病造血细胞中的具体作用仍不清楚。我们观察到人类白血病细胞对SAM50表达表现出特定依赖性,因为在表达BCR-ABL的细胞中下调SAM50,但在正常CD34(+)人类造血干细胞和祖细胞(HSPCs)中下调SAM50不会导致生长、集落形成和再植能力显著下降。表达BCR-ABL的HSPCs的线粒体功能受损,表现为线粒体膜电位和呼吸作用降低。在暴露于刺激增殖的富含细胞因子的培养条件下 的正常HSPCs中,也出现了SAM50下调的这种效应。与正常对应物相比,癌基因转导和细胞因子刺激的HSPCs均显示线粒体膜电位增加和ROS水平升高。因此,我们推测人类白血病HSPCs高度依赖线粒体的正常功能,线粒体完整性的破坏可能有助于靶向白血病细胞。

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