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首页> 外文期刊>Mitochondrion >Decreased heat shock protein 27 expression and altered autophagy in human cells harboring A8344G mitochondrial DNA mutation
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Decreased heat shock protein 27 expression and altered autophagy in human cells harboring A8344G mitochondrial DNA mutation

机译:携带A8344G线粒体DNA突变的人类细胞中热休克蛋白27的表达减少和自噬改变

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Mitochondrial DNA (mtDNA) mutations are responsible for human neuromuscular diseases caused by mitochondrial dysfunction. Myoclonus epilepsy associated with ragged-red fibers (MERRF) is a maternally inherited mitochondrial encephalomyopathy with various syndromes involving both muscular and nervous systems. The most common mutation in MERRF syndrome, A8344G mutation in mtDNA, has been associated with severe defects in protein synthesis. This defect impairs assembly of complexes in electron transport chain and results in decreased respiratory function of mitochondria. In this study, we showed a significant decrease of the heat shock protein 27 (Hsp27) in lymphoblastoid cells derived from a MERRF patient and in cybrid cells harboring MERRF A8344G mutation. However, normal cytoplasmic distributions of Hsp27 and normal heat shock responses were observed in both wild type and mutant cybrids. Furthermore, overexpression of wild type Hsp27 in mutant MERRF cybrids significantly decreased cell death under staurosporine (STS) treatment, suggesting a protective function of Hsp27 in cells harboring the A8344G mutation of mtDNA. Meanwhile, reverse transcriptase PCR showed no difference in the mRNA level between normal and mutant cybrids, indicating that alterations may occur at the protein level. Evidenced by the decreased levels of Hsp27 upon treatment with proteasome inhibitor, starvation and rapamycin and the accumulation of Hsp27 upon lysosomal inhibitor treatment; Hsp27 may be degraded by the autophagic pathway. In addition, the increased formation of LC3-II and autophagosomes was found in MERRF cybrids under the basal condition, indicating a constitutively-activated autophagic pathway. It may explain, at least partially, the faster turnover of Hsp27 in MERRF cybrids. This study provides information for us to understand that Hsp27 is degraded through the autophagic pathway and that Hsp27 may have a protective role in MERRF cells. Regulating Hsp27 and the autophagic pathway might help develop therapeutic solutions for treatment of MERRF syndrome in the future
机译:线粒体DNA(mtDNA)突变是由线粒体功能障碍引起的人类神经肌肉疾病的原因。与参差不齐的红色纤维(MERRF)相关的肌阵挛性癫痫是母体遗传的线粒体脑病,伴有涉及肌肉和神经系统的多种综合症。 MERRF综合征中最常见的突变是mtDNA中的A8344G突变,与蛋白质合成中的严重缺陷有关。该缺陷削弱了电子传输链中复合物的组装并导致线粒体呼吸功能降低。在这项研究中,我们显示来自MERRF患者的淋巴母细胞和具有MERRF A8344G突变的混合细胞中的热休克蛋白27(Hsp27)显着降低。然而,在野生型和突变型杂种动物中均观察到Hsp27的正常细胞质分布和正常的热休克反应。此外,突变型MERRF cybrids中野生型Hsp27的过表达显着降低了星形孢菌素(STS)处理下的细胞死亡,表明Hsp27在具有mtDNA A8344G突变的细胞中具有保护功能。同时,逆转录酶PCR显示正常和突变的cybrids之间的mRNA水平没有差异,表明在蛋白质水平上可能发生改变。蛋白酶体抑制剂,饥饿和雷帕霉素治疗后Hsp27水平降低,以及溶酶体抑制剂治疗后Hsp27的积累; Hsp27可以通过自噬途径降解。此外,在基础条件下,在MERRF杂种中发现了LC3-II和自噬小体形成的增加,这说明了组成性激活的自噬途径。它可能至少部分地解释了MERRF cybrids中Hsp27的更新更快。这项研究为我们了解Hsp27通过自噬途径降解提供了信息,并且Hsp27在MERRF细胞中可能具有保护作用。调节Hsp27和自噬途径可能有助于将来开发治疗MERRF综合征的治疗方案

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