Harada Kaito, Yahata Takashi, Onizuka Makoto, Ishii Takamasa, Aziz Ibrahim Abd, Kikkawa Eri, Gondo Yoichi, Ando Kiyoshi
Department of Hematology and Oncology, Tokai University School of Medicine, Isehara, Japan.
Research Center for Regenerative Medicine, Tokai University School of Medicine, Isehara, Japan.
Stem Cells. 2023 Jan 30;41(1):39-49. doi: 10.1093/stmcls/sxac072.
Mitochondria are indispensable in maintaining hematopoietic stem cells (HSCs), and mitochondrial complex II (MCII) has been recognized as a key component of HSCs. However, the physiological role of MCII on long-term hematopoiesis and hematopoietic reconstitution capacity remains unknown. Hence, this study evaluated the impact of MCII dysfunctions on long-term HSC maintenance and hematopoietic homeostasis among conditional transgenic mice with a missense mutation in the succinate dehydrogenase complex subunit C gene (SdhcV69E). HSCs collected from SdhcV69E mice had a higher reactive oxygen species (ROS) accumulation and DNA damage in response to mitochondrial activation. Via the aging stress response, MCII dysfunctions caused decreased white blood cell count with myeloid-skewing property, macrocytic anemia, and thrombocytosis. Moreover, the HSCs of aged SdhcV69E mice exhibited greater ROS accumulation and lower membrane potential. Transplantation-induced replicative stress also caused premature senescent hematopoiesis. Furthermore, accelerated ROS accumulation and profound DNA damage in HSCs were observed in the SdhcV69E-derived cell recipients. The long-term hematopoietic reconstitution capacity was remarkably impaired in HSCs from the SdhcV69E-derived cell recipients. Taken together, MCII plays an essential role in long-term hematopoiesis, and MCII dysfunctions with aging or replicative stresses caused excessive ROS accumulation and DNA damage in HSCs, leading to premature senescence.
线粒体在维持造血干细胞(HSC)方面不可或缺,线粒体复合物II(MCII)已被认为是造血干细胞的关键组成部分。然而,MCII在长期造血和造血重建能力方面的生理作用仍不清楚。因此,本研究评估了MCII功能障碍对琥珀酸脱氢酶复合物亚基C基因(SdhcV69E)错义突变的条件转基因小鼠长期造血干细胞维持和造血稳态的影响。从SdhcV69E小鼠收集的造血干细胞在受到线粒体激活时具有更高的活性氧(ROS)积累和DNA损伤。通过衰老应激反应,MCII功能障碍导致白细胞计数减少,并具有髓系偏向特性、大细胞性贫血和血小板增多症。此外,老年SdhcV69E小鼠的造血干细胞表现出更大的ROS积累和更低的膜电位。移植诱导的复制应激也导致造血过早衰老。此外,在SdhcV69E来源的细胞受体中观察到造血干细胞中ROS积累加速和严重的DNA损伤。SdhcV69E来源的细胞受体的造血干细胞的长期造血重建能力明显受损。综上所述,MCII在长期造血中起重要作用,MCII功能障碍与衰老或复制应激导致造血干细胞中ROS过度积累和DNA损伤,从而导致过早衰老。