Bejarano-García José Antonio, Millán-Uclés África, Rosado Iván V, Sánchez-Abarca Luís Ignacio, Caballero-Velázquez Teresa, Durán-Galván María José, Pérez-Simón José Antonio, Piruat José I
Instituto de Biomedicina de Sevilla (IBiS), Hospital Universitario Virgen del Rocío, CSIC, Universidad de Sevilla, Seville, Spain.
Departamento de Hematología, Hospital Universitario Virgen del Rocío, Seville, Spain.
Cell Death Dis. 2016 Dec 8;7(12):e2516. doi: 10.1038/cddis.2016.411.
It is established that hematopoietic stem cells (HSC) in the hypoxic bone marrow have adapted their metabolism to oxygen-limiting conditions. This adaptation includes suppression of mitochondrial activity, induction of anerobic glycolysis, and activation of hypoxia-inducible transcription factor 1α (Hif1α)-dependent gene expression. During progression of hematopoiesis, a metabolic switch towards mitochondrial oxidative phosphorylation is observed, making this organelle essential for determining cell fate choice in bone marrow. However, given that HSC metabolism is essentially oxygen-independent, it is still unclear whether functional mitochondria are absolutely required for their survival. To assess the actual dependency of these undifferentiated cells on mitochondrial function, we have performed an analysis of the hematopoiesis in a mouse mutant, named SDHD-ESR, with inducible deletion of the mitochondrial protein-encoding SdhD gene. This gene encodes one of the subunits of the mitochondrial complex II (MCII). In this study, we demonstrate that, in contrast to what has been previously established, survival of HSC, and also myeloid and B-lymphoid progenitors, depends on proper mitochondrial activity. In addition, gene expression analysis of these hematopoietic lineages in SDHD-ESR mutants calls into question the proposed activation of Hif1α in response to MCII dysfunction.
现已确定,缺氧骨髓中的造血干细胞(HSC)已使其新陈代谢适应了氧气限制条件。这种适应包括抑制线粒体活性、诱导无氧糖酵解以及激活缺氧诱导转录因子1α(Hif1α)依赖性基因表达。在造血过程中,观察到向线粒体氧化磷酸化的代谢转换,这使得该细胞器对于决定骨髓中的细胞命运选择至关重要。然而,鉴于HSC代谢本质上不依赖氧气,其存活是否绝对需要功能性线粒体仍不清楚。为了评估这些未分化细胞对线粒体功能的实际依赖性,我们对一种名为SDHD-ESR的小鼠突变体的造血过程进行了分析,该突变体可诱导缺失线粒体蛋白编码基因SdhD。该基因编码线粒体复合物II(MCII)的一个亚基。在本研究中,我们证明,与之前所确定的情况相反,HSC以及髓系和B淋巴细胞祖细胞的存活依赖于适当的线粒体活性。此外,对SDHD-ESR突变体中这些造血谱系的基因表达分析对所提出的MCII功能障碍时Hif1α的激活提出了质疑。