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首页> 外文期刊>Cell death & disease. >Iron overload promotes mitochondrial fragmentation in mesenchymal stromal cells from myelodysplastic syndrome patients through activation of the AMPK/MFF/Drp1 pathway
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Iron overload promotes mitochondrial fragmentation in mesenchymal stromal cells from myelodysplastic syndrome patients through activation of the AMPK/MFF/Drp1 pathway

机译:铁过载通过激活AMPK / MFF / Drp1途径促进骨髓增生异常综合症患者间充质基质细胞的线粒体破碎

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Iron overload (IO) has been reported to contribute to mesenchymal stromal cell (MSC) damage, but the precise mechanism has yet to be clearly elucidated. In this study, we found that IO increased cell apoptosis and lowered cell viability in MSCs, accompanied by extensive mitochondrial fragmentation and autophagy enhancement. All these effects were reactive oxygen species (ROS) dependent. In MSCs with IO, the ATP concentrations were significantly reduced due to high ROS levels and low electron respiratory chain complex (ETC) II/III activity. Reduced ATP phosphorylated AMP-activated protein kinase (AMPK). Activation of AMPK kinase complexes triggered mitochondrial fission. Moreover, gene knockout of AMPK via CRISPR/Cas9 reduced cell apoptosis, enhanced cell viability and attenuated mitochondrial fragmentation and autophagy caused by IO in MSCs. Further, AMPK-induced mitochondrial fragmentation of MSCs with IO was mediated via phosphorylation of mitochondrial fission factor (MFF), a mitochondrial outer-membrane receptor for the GTPase dynamin-related protein 1 (Drp1). Gene knockdown of MFF reversed AMPK-induced mitochondrial fragmentation in MSCs with IO. In addition, MSCs from IO patients with myelodysplastic syndrome (MDS) showed increased cell apoptosis, decreased cell viability, higher ROS levels, lower ATP concentrations and increased mitochondrial fragmentation compared with MSCs from non-IO patients. In addition, iron chelation or antioxidant weakened the activity of the AMPK/MFF/Drp1 pathway in MDS-MSCs with IO from several patients, accompanied by attenuation of mitochondrial fragmentation and autophagy. Taken together, the AMPK/MFF/Drp1 pathway has an important role in the damage to MDS-MSCs caused by IO.
机译:据报道,铁超载(IO)会导致间充质基质细胞(MSC)损伤,但确切机制尚待清楚阐明。在这项研究中,我们发现IO会增加MSC中的细胞凋亡并降低细胞活力,并伴随着广泛的线粒体片段化和自噬增强。所有这些影响均取决于活性氧(ROS)。在具有IO的MSC中,由于高ROS水平和低电子呼吸链复合物(ETC)II / III活性,ATP浓度显着降低。减少的ATP磷酸化AMP激活的蛋白激酶(AMPK)。 AMPK激酶复合物的激活触发线粒体裂变。此外,通过CRISPR / Cas9敲除AMPK的基因可减少细胞凋亡,增强细胞活力并减弱IO引起的MSCs的线粒体片段化和自噬。此外,AMPK诱导的IO介导的MSCs线粒体断裂是通过线粒体裂变因子(MFF)的磷酸化介导的,线粒体裂变因子(GFFase dynamin相关蛋白1(Drp1)的线粒体外膜受体)。 MFF的基因敲低逆转了具有IO的MSC中AMPK诱导的线粒体片段化。另外,与非IO患者相比,来自骨髓增生异常综合征(MDS)IO患者的MSC显示出细胞凋亡增加,细胞活力降低,ROS水平升高,ATP浓度降低和线粒体碎片增多。此外,铁螯合剂或抗氧化剂减弱了来自多个患者的IO的MDS-MSC中AMPK / MFF / Drp1途径的活性,并伴随着线粒体片段化和自噬的减弱。综上所述,AMPK / MFF / Drp1途径在IO对MDS-MSC的损害中具有重要作用。

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