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首页> 外文期刊>Scientific reports. >Mieap-induced accumulation of lysosomes within mitochondria (MALM) regulates gastric cancer cell invasion under hypoxia by suppressing reactive oxygen species accumulation
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Mieap-induced accumulation of lysosomes within mitochondria (MALM) regulates gastric cancer cell invasion under hypoxia by suppressing reactive oxygen species accumulation

机译:Mieap诱导的线粒体内溶酶体积累(MALM)通过抑制活性氧的积累来调节缺氧条件下胃癌细胞的侵袭

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Mitochondrial quality control (MQC) protects against potentially damaging events, such as excessive generation of mitochondrial reactive oxygen species (mtROS). We investigated the contribution of the two major MQC processes, namely, mitophagy and Mieap-induced accumulation of lysosomes within mitochondria (MALM), to the response to hypoxia of two human gastric cancer (GC) cell lines. We found that hypoxia increased mtROS generation and cell invasion in 58As9, but not in MKN45, although the transcription factor hypoxia-inducible factor 1α was induced in both cell lines. Colocalisation of lysosomes with mitochondria was found only in hypoxic MKN45 cells, suggesting that hypoxia-induced MQC functions normally in MKN45 but may be impaired in 58As9. Hypoxia did not lead to decreased mitochondrial mass or DNA or altered appearance of autophagosomes, as judged by electron microscopy, suggesting that mitophagy was not induced in either cell line. However, western blot analysis revealed the presence of the MALM-associated proteins Mieap, BNIP3 and BNIP3L, and the lysosomal protein cathepsin D in the mitochondrial fraction of MKN45 cells under hypoxia. Finally, Mieap knockdown in MKN45 cells resulted in increased mtROS accumulation and cell invasion under hypoxia. Our results suggest that hypoxia-induced MALM suppresses GC cell invasion by preventing mtROS generation.
机译:线粒体质量控制(MQC)可防止潜在的破坏性事件,例如线粒体活性氧(mtROS)的过量生成。我们调查了两个主要的MQC过程,即线粒体和Mieap诱导的线粒体(MALM)内溶酶体积累对两种人胃癌(GC)细胞系对缺氧反应的贡献。我们发现低氧增加了58As9中mtROS的产生和细胞侵袭,但在MKN45中却没有,尽管在两种细胞系中均诱导了转录因子低氧诱导因子1α。仅在缺氧的MKN45细胞中发现了溶酶体与线粒体的共定位,这表明低氧诱导的MQC在MKN45中正常起作用,但在58As9中可能受损。根据电子显微镜的判断,缺氧不会导致线粒体质量或DNA减少或自噬体的外观改变,这表明在两种细胞系中均未诱导线粒体。然而,蛋白质印迹分析揭示了在低氧条件下,MKN45细胞线粒体部分中存在与MALM相关的蛋白Mieap,BNIP3和BNIP3L,以及溶酶体蛋白组织蛋白酶D。最后,在缺氧条件下,MKN45细胞中的Mieap敲低导致mtROS积累和细胞侵袭增加。我们的结果表明,低氧诱导的MALM可通过阻止mtROS生成来抑制GC细胞入侵。

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