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Effects of nitric oxide donors on cybrids harbouring the mitochondrial myopathy, encephalopathy, lactic acidosis and stroke-like episodes (MELAS) A3243G mitochondrial DNA mutation.一氧化氮供体对携带线粒体肌病、脑病、乳酸性酸中毒和卒中样发作(MELAS)A3243G线粒体DNA突变的细胞融合体的影响。
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2
A novel mutation in the mitochondrial 16S rRNA gene in a patient with MELAS syndrome, diabetes mellitus, hyperthyroidism and cardiomyopathy.一名患有线粒体脑肌病伴乳酸血症和卒中样发作(MELAS)综合征、糖尿病、甲状腺功能亢进和心肌病患者的线粒体16S rRNA基因新突变。
J Biomed Sci. 2001 Jul-Aug;8(4):328-35. doi: 10.1007/BF02258374.
3
MELAS mitochondrial DNA mutation A3243G reduces glutamate transport in cybrids cell lines.MELAS线粒体DNA突变A3243G降低了胞质杂种细胞系中的谷氨酸转运。
Exp Neurol. 2008 Jul;212(1):152-6. doi: 10.1016/j.expneurol.2008.03.015. Epub 2008 Mar 26.
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Pioglitazone and Deoxyribonucleoside Combination Treatment Increases Mitochondrial Respiratory Capacity in m.3243A>G MELAS Cybrid Cells.吡格列酮和脱氧核苷组合治疗可增加 m.3243A>G MELAS 细胞系的线粒体呼吸能力。
Int J Mol Sci. 2020 Mar 20;21(6):2139. doi: 10.3390/ijms21062139.
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Enhanced oxidative damage in human cells harboring A3243G mutation of mitochondrial DNA: implication of oxidative stress in the pathogenesis of mitochondrial diabetes.携带线粒体DNA A3243G突变的人类细胞中氧化损伤增强:氧化应激在线粒体糖尿病发病机制中的作用
Diabetes Res Clin Pract. 2001 Dec;54 Suppl 2:S45-56. doi: 10.1016/s0168-8227(01)00335-7.
6
Secondary coenzyme Q10 deficiency triggers mitochondria degradation by mitophagy in MELAS fibroblasts.继发辅酶 Q10 缺乏通过自噬引发 MELAS 成纤维细胞中线粒体降解。
FASEB J. 2011 Aug;25(8):2669-87. doi: 10.1096/fj.10-165340. Epub 2011 May 6.
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Increased mitochondrial DNA in blood vessels and ragged-red fibers in mitochondrial myopathy, encephalopathy, lactic acidosis, and stroke-like episodes (MELAS).血管中线粒体DNA增加以及线粒体肌病、脑病、乳酸性酸中毒和卒中样发作(MELAS)中的破碎红纤维。
Ann Neurol. 1993 Mar;33(3):275-80. doi: 10.1002/ana.410330308.
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A follow-up study in a Taiwanese family with mitochondrial myopathy, encephalopathy, lactic acidosis and stroke-like episodes syndrome.对一个患有线粒体肌病、脑病、乳酸性酸中毒和卒中样发作综合征的台湾家庭进行的随访研究。
J Formos Med Assoc. 2007 Jul;106(7):528-36. doi: 10.1016/S0929-6646(07)60003-5.
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Alterations in coenzyme Q status in a cybrid line harboring the 3243A>G mutation of mitochondrial DNA is associated with abnormal mitochondrial bioenergetics and dysregulated mitochondrial biogenesis.携带有线粒体 DNA 3243A>G 突变的细胞系中线粒体辅酶 Q 状态的改变与异常的线粒体生物能量学和失调的线粒体生物发生有关。
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Effect of humanin on decreased ATP levels of human lymphocytes harboring A3243G mutant mitochondrial DNA.人胰岛素对携带A3243G突变线粒体DNA的人淋巴细胞ATP水平降低的影响。
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Arginine Supplementation in MELAS Syndrome: What Do We Know about the Mechanisms?精氨酸补充治疗 MELAS 综合征:其作用机制知多少?
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Impact of Mitochondrial A3243G Heteroplasmy on Mitochondrial Bioenergetics and Dynamics of Directly Reprogrammed MELAS Neurons.线粒体 A3243G 异质性对直接重编程的 MELAS 神经元线粒体生物能量学和动力学的影响。
Cells. 2022 Dec 21;12(1):15. doi: 10.3390/cells12010015.
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KL1333, a Novel NAD Modulator, Improves Energy Metabolism and Mitochondrial Dysfunction in MELAS Fibroblasts.新型NAD调节剂KL1333改善MELAS成纤维细胞中的能量代谢和线粒体功能障碍。
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4
NO control of mitochondrial function in normal and transformed cells.正常和转化细胞中线粒体功能无法控制。
Biochim Biophys Acta Bioenerg. 2017 Aug;1858(8):573-581. doi: 10.1016/j.bbabio.2017.02.009. Epub 2017 Feb 16.
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Oxidative stress in inherited mitochondrial diseases.遗传性线粒体疾病中的氧化应激
Free Radic Biol Med. 2015 Nov;88(Pt A):10-7. doi: 10.1016/j.freeradbiomed.2015.05.039. Epub 2015 Jun 12.
6
Degree of glutathione deficiency and redox imbalance depend on subtype of mitochondrial disease and clinical status.谷胱甘肽缺乏程度和氧化还原失衡取决于线粒体疾病的亚型和临床状态。
PLoS One. 2014 Jun 18;9(6):e100001. doi: 10.1371/journal.pone.0100001. eCollection 2014.
7
Diabetes-associated mitochondrial DNA mutation A3243G impairs cellular metabolic pathways necessary for beta cell function.糖尿病相关的线粒体DNA突变A3243G损害了β细胞功能所必需的细胞代谢途径。
Diabetologia. 2006 Aug;49(8):1816-26. doi: 10.1007/s00125-006-0301-9. Epub 2006 May 31.

本文引用的文献

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Mitochondrial nitric oxide synthase.线粒体一氧化氮合酶
Mitochondrion. 2004 Mar;3(4):187-204. doi: 10.1016/j.mito.2003.10.001.
2
Attenuation of free radical production and paracrystalline inclusions by creatine supplementation in a patient with a novel cytochrome b mutation.补充肌酸对一名患有新型细胞色素b突变患者自由基产生和副晶状内含物的抑制作用
Muscle Nerve. 2004 Apr;29(4):537-47. doi: 10.1002/mus.20020.
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The role of glutathione in nitric oxide donor toxicity to SN56 cholinergic neuron-like cells.谷胱甘肽在一氧化氮供体对SN56胆碱能神经元样细胞毒性中的作用。
Brain Res. 2004 Apr 16;1005(1-2):90-100. doi: 10.1016/j.brainres.2004.01.046.
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Mitochondrial disease: mutations and mechanisms.线粒体疾病:突变与机制
Neurochem Res. 2004 Mar;29(3):589-600. doi: 10.1023/b:nere.0000014829.42364.dd.
5
Mitochondrial nitric oxide synthase is not eNOS, nNOS or iNOS.线粒体一氧化氮合酶不是内皮型一氧化氮合酶、神经元型一氧化氮合酶或诱导型一氧化氮合酶。
Free Radic Biol Med. 2003 Nov 15;35(10):1217-28. doi: 10.1016/s0891-5849(03)00510-0.
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A SENSITIVE AND SIMPLE METHOD FOR DETERMINATION OF FERROCYANIDE.一种测定亚铁氰化物的灵敏且简便的方法。
Anal Biochem. 1963 Dec;6:549-54. doi: 10.1016/0003-2697(63)90149-0.
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Peroxynitrite reactions and formation in mitochondria.线粒体中过氧亚硝酸盐的反应与形成
Free Radic Biol Med. 2002 Dec 1;33(11):1451-64. doi: 10.1016/s0891-5849(02)01111-5.
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Apoptosis-inducing factor (AIF): key to the conserved caspase-independent pathways of cell death?凋亡诱导因子(AIF):细胞死亡中保守的非半胱天冬酶依赖性途径的关键?
J Cell Sci. 2002 Dec 15;115(Pt 24):4727-34. doi: 10.1242/jcs.00210.
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Progress toward clinical application of the nitric oxide-releasing diazeniumdiolates.一氧化氮释放二氮烯二醇盐临床应用的进展。
Annu Rev Pharmacol Toxicol. 2003;43:585-607. doi: 10.1146/annurev.pharmtox.43.100901.135831. Epub 2002 Jan 10.
10
Nitric oxide inhibits capacitative Ca2+ entry by suppression of mitochondrial Ca2+ handling.一氧化氮通过抑制线粒体对钙离子的处理来抑制钙离子的容量性内流。
Br J Pharmacol. 2002 Nov;137(6):821-30. doi: 10.1038/sj.bjp.0704949.

一氧化氮供体对携带线粒体肌病、脑病、乳酸性酸中毒和卒中样发作(MELAS)A3243G线粒体DNA突变的细胞融合体的影响。

Effects of nitric oxide donors on cybrids harbouring the mitochondrial myopathy, encephalopathy, lactic acidosis and stroke-like episodes (MELAS) A3243G mitochondrial DNA mutation.

作者信息

Sandhu Jagdeep K, Sodja Caroline, McRae Kevan, Li Yan, Rippstein Peter, Wei Yau-Huei, Lach Boleslaw, Lee Fay, Bucurescu Septimiu, Harper Mary-Ellen, Sikorska Marianna

机构信息

Neurogenesis and Brain Repair Group, M54, Institute for Biological Sciences, National Research Council Canada, 1200 Montreal Road, Ottawa, ON, Canada K1A 0R6.

出版信息

Biochem J. 2005 Oct 15;391(Pt 2):191-202. doi: 10.1042/BJ20050272.

DOI:10.1042/BJ20050272
PMID:15969653
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1276916/
Abstract

Reactive nitrogen and oxygen species (O2*-, H2O2, NO* and ONOO-) have been strongly implicated in the pathophysiology of neurodegenerative and mitochondrial diseases. In the present study, we examined the effects of nitrosative and/or nitrative stress generated by DETA-NO {(Z)-1-[2-aminoethyl-N-(2-ammonioethyl)amino]diazen-1-ium-1,2-diolate}, SIN-1 (3-morpholinosydnonimine hydrochloride) and SNP (sodium nitroprusside) on U87MG glioblastoma cybrids carrying wt (wild-type) and mutant [A3243G (Ala3243-->Gly)] mtDNA (mitochondrial genome) from a patient suffering from MELAS (mitochondrial myopathy, encephalopathy, lactic acidosis and stroke-like episodes). The mutant cybrids had reduced activity of cytochrome c oxidase, significantly lower ATP level and decreased mitochondrial membrane potential. However, endogenous levels of reactive oxygen species were very similar in all cybrids regardless of whether they carried the mtDNA defects or not. Furthermore, the cybrids were insensitive to the nitrosative and/or nitrative stress produced by either DETA-NO or SIN-1 alone. Cytotoxicity, however, was observed in response to SNP treatment and a combination of SIN-1 and glucose-deprivation. The mutant cybrids were significantly more sensitive to these insults compared with the wt controls. Ultrastructural examination of dying cells revealed several characteristic features of autophagic cell death. We concluded that nitrosative and/or nitrative stress alone were insufficient to trigger cytotoxicity in these cells, but cell death was observed with a combination of metabolic and nitrative stress. The vulnerability of the cybrids to these types of injury correlated with the cellular energy status, which were compromised by the MELAS mutation.

摘要

活性氮和氧物种(超氧阴离子、过氧化氢、一氧化氮和过氧亚硝酸盐)与神经退行性疾病和线粒体疾病的病理生理学密切相关。在本研究中,我们检测了由二乙三胺一氧化氮({(Z)-1-[2-氨基乙基-N-(2-氨乙基)氨基]重氮-1-鎓-1,2-二醇盐})、SIN-1(3-吗啉代亚硝基胍盐酸盐)和硝普钠对携带野生型(wt)和来自一名患有线粒体肌病、脑病、乳酸酸中毒和中风样发作(MELAS)患者的突变型[A3243G(丙氨酸3243→甘氨酸)]线粒体DNA(线粒体基因组)的U87MG胶质母细胞瘤细胞杂交体的亚硝化和/或硝化应激的影响。突变型细胞杂交体的细胞色素c氧化酶活性降低,ATP水平显著降低,线粒体膜电位下降。然而,无论是否携带线粒体DNA缺陷,所有细胞杂交体中的活性氧内源性水平都非常相似。此外,细胞杂交体对单独由二乙三胺一氧化氮或SIN-1产生的亚硝化和/或硝化应激不敏感。然而,在硝普钠处理以及SIN-1和葡萄糖剥夺联合处理后观察到细胞毒性。与野生型对照相比,突变型细胞杂交体对这些损伤明显更敏感。对死亡细胞的超微结构检查揭示了自噬性细胞死亡的几个特征。我们得出结论,单独的亚硝化和/或硝化应激不足以在这些细胞中引发细胞毒性,但在代谢应激和硝化应激联合作用下观察到细胞死亡。细胞杂交体对这些类型损伤的易感性与细胞能量状态相关,而细胞能量状态因MELAS突变而受损。