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OPA1 links human mitochondrial genome maintenance to mtDNA replication and distribution.OPA1 将人类线粒体基因组维持与 mtDNA 复制和分布联系起来。
Genome Res. 2011 Jan;21(1):12-20. doi: 10.1101/gr.108696.110. Epub 2010 Oct 25.
2
OPA1 and disease-causing mutants perturb mitochondrial nucleoid distribution.OPA1 和致病变异体扰乱了线粒体基因组的分布。
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OPA1 Isoforms in the Hierarchical Organization of Mitochondrial Functions.OPA1 异构体在线粒体功能的层次组织中的作用。
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Mitochondrial nucleoid clusters protect newly synthesized mtDNA during Doxorubicin- and Ethidium Bromide-induced mitochondrial stress.线粒体类核簇在阿霉素和溴化乙锭诱导的线粒体应激过程中保护新合成的线粒体DNA。
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Eight human OPA1 isoforms, long and short: What are they for?八种人类 OPA1 异构体,长和短:它们是用来做什么的?
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6
OPA1-Exon4b Binds to mtDNA D-Loop for Transcriptional and Metabolic Modulation, Independent of Mitochondrial Fusion.OPA1外显子4b与线粒体DNA D环结合,用于转录和代谢调节,与线粒体融合无关。
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Anticancer DNA intercalators cause p53-dependent mitochondrial DNA nucleoid re-modelling.抗癌DNA嵌入剂可导致p53依赖的线粒体DNA类核重塑。
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The TFAM-to-mtDNA ratio defines inner-cellular nucleoid populations with distinct activity levels.TFAM 与 mtDNA 的比值定义了具有不同活性水平的细胞内核仁群体。
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Mitochondrial fusion provides an 'initial metabolic complementation' controlled by mtDNA.线粒体融合提供了一种由线粒体DNA控制的“初始代谢互补”。
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Loss of OPA1 disturbs cellular calcium homeostasis and sensitizes for excitotoxicity.OPA1 的缺失会扰乱细胞内钙离子稳态,并使细胞对兴奋性毒性敏感。
Cell Death Differ. 2013 Feb;20(2):353-65. doi: 10.1038/cdd.2012.128. Epub 2012 Nov 9.

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Longitudinal Visual Biomarkers in Dominant Optic Atrophy: A Systematic Review and Meta-Analysis.显性视神经萎缩的纵向视觉生物标志物:系统评价与荟萃分析
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Spatial analysis of mitochondrial gene expression reveals dynamic translation hubs and remodeling in stress.线粒体基因表达的空间分析揭示了应激状态下的动态翻译中心及重塑。
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Disruption of mitochondrial homeostasis and permeability transition pore opening in OPA1 iPSC-derived retinal ganglion cells.OPA1诱导多能干细胞来源的视网膜神经节细胞中线粒体稳态的破坏和通透性转换孔的开放。
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OPA1 and disease-causing mutants perturb mitochondrial nucleoid distribution.OPA1 和致病变异体扰乱了线粒体基因组的分布。
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Bringing together but staying apart: decisive differences in animal and fungal mitochondrial inner membrane fusion.汇聚却又保持分离:动物和真菌线粒体内膜融合的决定性差异
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Severe mitochondrial encephalomyopathy caused by variants in gene.由基因变异引起的严重线粒体脑肌病。
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A spatial atlas of mitochondrial gene expression reveals dynamic translation hubs and remodeling in stress.线粒体基因表达的空间图谱揭示了应激状态下的动态翻译中心及重塑。
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9
The human OPA1 mutation induces adult onset and progressive auditory neuropathy in mice.人类 OPA1 突变在小鼠中诱导成年发病和进行性听觉神经病。
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10
In situ architecture of Opa1-dependent mitochondrial cristae remodeling.OPA1 依赖性线粒体嵴重塑的原位结构。
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本文引用的文献

1
Mitochondrial fusion is required for mtDNA stability in skeletal muscle and tolerance of mtDNA mutations.线粒体融合对于骨骼肌中线粒体 DNA 的稳定性和对线粒体 DNA 突变的耐受性是必需的。
Cell. 2010 Apr 16;141(2):280-9. doi: 10.1016/j.cell.2010.02.026.
2
Transmembrane segments of the dynamin Msp1p uncouple its functions in the control of mitochondrial morphology and genome maintenance.发动蛋白Msp1p的跨膜片段使其在控制线粒体形态和基因组维持方面的功能解偶联。
J Cell Sci. 2009 Aug 1;122(Pt 15):2632-9. doi: 10.1242/jcs.040139. Epub 2009 Jun 30.
3
Mitochondrial bioenergetic background confers a survival advantage to HepG2 cells in response to chemotherapy.线粒体生物能量背景赋予HepG2细胞在化疗反应中的生存优势。
Mol Carcinog. 2009 Aug;48(8):733-41. doi: 10.1002/mc.20539.
4
Molecular screening of 980 cases of suspected hereditary optic neuropathy with a report on 77 novel OPA1 mutations.对980例疑似遗传性视神经病变患者进行分子筛查,并报告77种新的OPA1突变。
Hum Mutat. 2009 Jul;30(7):E692-705. doi: 10.1002/humu.21025.
5
Disorders from perturbations of nuclear-mitochondrial intergenomic cross-talk.核-线粒体基因组间串扰引起的疾病。
J Intern Med. 2009 Feb;265(2):174-92. doi: 10.1111/j.1365-2796.2008.02059.x.
6
Preventing mitochondrial fission impairs mitochondrial function and leads to loss of mitochondrial DNA.阻止线粒体分裂会损害线粒体功能并导致线粒体DNA丢失。
PLoS One. 2008 Sep 22;3(9):e3257. doi: 10.1371/journal.pone.0003257.
7
Mitochondrial nucleoids maintain genetic autonomy but allow for functional complementation.线粒体类核保持遗传自主性,但允许功能互补。
J Cell Biol. 2008 Jun 30;181(7):1117-28. doi: 10.1083/jcb.200712101. Epub 2008 Jun 23.
8
Reversible optic neuropathy with OPA1 exon 5b mutation.伴有OPA1外显子5b突变的可逆性视神经病变
Ann Neurol. 2008 May;63(5):667-71. doi: 10.1002/ana.21376.
9
OPA1 mutations associated with dominant optic atrophy impair oxidative phosphorylation and mitochondrial fusion.与显性遗传性视神经萎缩相关的OPA1突变会损害氧化磷酸化和线粒体融合。
Brain. 2008 Feb;131(Pt 2):352-67. doi: 10.1093/brain/awm335.
10
OPA1 mutations induce mitochondrial DNA instability and optic atrophy 'plus' phenotypes.OPA1突变诱导线粒体DNA不稳定及视神经萎缩“加”型表型。
Brain. 2008 Feb;131(Pt 2):338-51. doi: 10.1093/brain/awm298. Epub 2007 Dec 24.

OPA1 将人类线粒体基因组维持与 mtDNA 复制和分布联系起来。

OPA1 links human mitochondrial genome maintenance to mtDNA replication and distribution.

机构信息

INSERM U-583, Institut des Neurosciences de Montpellier, Montpellier, France.

出版信息

Genome Res. 2011 Jan;21(1):12-20. doi: 10.1101/gr.108696.110. Epub 2010 Oct 25.

DOI:10.1101/gr.108696.110
PMID:20974897
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3012919/
Abstract

Eukaryotic cells harbor a small multiploid mitochondrial genome, organized in nucleoids spread within the mitochondrial network. Maintenance and distribution of mitochondrial DNA (mtDNA) are essential for energy metabolism, mitochondrial lineage in primordial germ cells, and to prevent mtDNA instability, which leads to many debilitating human diseases. Mounting evidence suggests that the actors of the mitochondrial network dynamics, among which is the intramitochondrial dynamin OPA1, might be involved in these processes. Here, using siRNAs specific to OPA1 alternate spliced exons, we evidenced that silencing of the OPA1 variants including exon 4b leads to mtDNA depletion, secondary to inhibition of mtDNA replication, and to marked alteration of mtDNA distribution in nucleoid and nucleoid distribution throughout the mitochondrial network. We demonstrate that a small hydrophobic 10-kDa peptide generated by cleavage of the OPA1-exon4b isoform is responsible for this process and show that this peptide is embedded in the inner membrane and colocalizes and coimmunoprecipitates with nucleoid components. We propose a novel synthetic model in which a peptide, including two trans-membrane domains derived from the N terminus of the OPA1-exon4b isoform in vertebrates or from its ortholog in lower eukaryotes, might contribute to nucleoid attachment to the inner mitochondrial membrane and promotes mtDNA replication and distribution. Thus, this study places OPA1 as a direct actor in the maintenance of mitochondrial genome integrity.

摘要

真核细胞拥有一个小型的多倍体线粒体基因组,组织在散布在线粒体网络中的核体中。线粒体 DNA(mtDNA)的维持和分布对于能量代谢、原始生殖细胞中的线粒体谱系以及防止导致许多使人衰弱的人类疾病的 mtDNA 不稳定性至关重要。越来越多的证据表明,线粒体网络动力学的参与者,其中包括线粒体内的 dynamin OPA1,可能参与这些过程。在这里,我们使用针对 OPA1 选择性剪接外显子的 siRNA,证明沉默包括外显子 4b 在内的 OPA1 变体导致 mtDNA 耗竭,这是由于 mtDNA 复制受到抑制,以及核体中 mtDNA 分布和核体在整个线粒体网络中的分布发生明显改变。我们证明,由 OPA1-exon4b 异构体切割产生的一个小的疏水性 10kDa 肽是导致这一过程的原因,并表明该肽嵌入在内膜中,并与核体成分共定位和共免疫沉淀。我们提出了一个新的合成模型,其中包括两个跨膜结构域的肽,来自脊椎动物的 OPA1-exon4b 异构体的 N 端或来自较低等真核生物的同源物,可能有助于核体附着在内线粒体膜并促进 mtDNA 复制和分布。因此,这项研究将 OPA1 作为维持线粒体基因组完整性的直接参与者。