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本文引用的文献

1
Prematuration with cyclic adenosine monophosphate modulators alters cumulus cell and oocyte metabolism and enhances developmental competence of in vitro-matured mouse oocytes.使用环磷酸腺苷调节剂进行提前成熟可改变卵丘细胞和卵母细胞代谢,并提高体外成熟小鼠卵母细胞的发育能力。
Biol Reprod. 2014 Aug;91(2):47. doi: 10.1095/biolreprod.114.118471. Epub 2014 Jun 25.
2
SIRT1 signalling protects mouse oocytes against oxidative stress and is deregulated during aging.SIRT1信号通路保护小鼠卵母细胞免受氧化应激影响,且在衰老过程中失调。
Hum Reprod. 2014 Sep;29(9):2006-17. doi: 10.1093/humrep/deu160. Epub 2014 Jun 24.
3
Sirt2 functions in spindle organization and chromosome alignment in mouse oocyte meiosis.Sirt2 在小鼠卵母细胞减数分裂中的纺锤体组织和染色体排列中发挥作用。
FASEB J. 2014 Mar;28(3):1435-45. doi: 10.1096/fj.13-244111. Epub 2013 Dec 12.
4
SIRT3 deacetylates FOXO3 to protect mitochondria against oxidative damage.SIRT3 通过去乙酰化 FOXO3 来保护线粒体免受氧化损伤。
Free Radic Biol Med. 2013 Oct;63:222-34. doi: 10.1016/j.freeradbiomed.2013.05.002. Epub 2013 May 7.
5
Maternal obesity, infertility and mitochondrial dysfunction: potential mechanisms emerging from mouse model systems.母体肥胖、不孕与线粒体功能障碍:从鼠模型系统中浮现的潜在机制。
Mol Hum Reprod. 2013 Aug;19(8):486-94. doi: 10.1093/molehr/gat026. Epub 2013 Apr 23.
6
SIRT3 reverses aging-associated degeneration.SIRT3 逆转与衰老相关的退行性变。
Cell Rep. 2013 Feb 21;3(2):319-27. doi: 10.1016/j.celrep.2013.01.005. Epub 2013 Jan 31.
7
Melatonin prevents postovulatory oocyte aging in the mouse and extends the window for optimal fertilization in vitro.褪黑素可防止排卵后卵母细胞衰老,并延长体外最佳受精窗口。
Biol Reprod. 2013 Mar 21;88(3):67. doi: 10.1095/biolreprod.112.106450. Print 2013 Mar.
8
Impact of hydrogen peroxide-driven Fenton reaction on mouse oocyte quality.过氧化氢驱动的芬顿反应对小鼠卵母细胞质量的影响。
Free Radic Biol Med. 2013 May;58:154-9. doi: 10.1016/j.freeradbiomed.2012.12.007. Epub 2012 Dec 20.
9
Mitochondrial metabolism, sirtuins, and aging.线粒体代谢、沉默调节蛋白和衰老。
Cold Spring Harb Perspect Biol. 2012 Dec 1;4(12):a013102. doi: 10.1101/cshperspect.a013102.
10
High fat diet induced developmental defects in the mouse: oocyte meiotic aneuploidy and fetal growth retardation/brain defects.高脂肪饮食诱导的小鼠发育缺陷:卵母细胞减数分裂非整倍体和胎儿生长迟缓/脑缺陷。
PLoS One. 2012;7(11):e49217. doi: 10.1371/journal.pone.0049217. Epub 2012 Nov 12.

沉默调节蛋白3可预防母体肥胖相关的氧化应激及小鼠卵母细胞减数分裂缺陷。

Sirt3 prevents maternal obesity-associated oxidative stress and meiotic defects in mouse oocytes.

作者信息

Zhang Liang, Han Longsen, Ma Rujun, Hou Xiaojing, Yu Yang, Sun Shaochen, Xu Yinxue, Schedl Tim, Moley Kelle H, Wang Qiang

机构信息

a College of Animal Science & Technology; Nanjing Agricultural University ; Nanjing , China.

b State Key Laboratory of Reproductive Medicine; Nanjing Medical University ; Nanjing , China.

出版信息

Cell Cycle. 2015;14(18):2959-68. doi: 10.1080/15384101.2015.1026517. Epub 2015 Mar 19.

DOI:10.1080/15384101.2015.1026517
PMID:25790176
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4825572/
Abstract

Maternal obese environment has been reported to induce oxidative stress and meiotic defects in oocytes, however the underlying molecular mechanism remains unclear. Here, using mice fed a high fat diet (HFD) as an obesity model, we first detected enhanced reactive oxygen species (ROS) content and reduced Sirt3 expression in HFD oocytes. We further observed that specific depletion of Sirt3 in control oocytes elevates ROS levels while Sirt3 overexpression attenuates ROS production in HFD oocytes, with significant suppression of spindle disorganization and chromosome misalignment phenotypes that have been reported in the obesity model. Candidate screening revealed that the acetylation status of lysine 68 on superoxide dismutase (SOD2K68) is dependent on Sirt3 deacetylase activity in oocytes, and acetylation-mimetic mutant SOD2K68Q results in almost threefold increase in intracellular ROS. Moreover, we found that acetylation levels of SOD2K68 are increased by ~80% in HFD oocytes and importantly, that the non-acetylatable-mimetic mutant SOD2K68R is capable of partially rescuing their deficient phenotypes. Together, our data identify Sirt3 as an important player in modulating ROS homeostasis during oocyte development, and indicate that Sirt3-dependent deacetylation of SOD2 plays a protective role against oxidative stress and meiotic defects in oocytes under maternal obese conditions.

摘要

据报道,母体肥胖环境会诱导卵母细胞产生氧化应激和减数分裂缺陷,但其潜在的分子机制仍不清楚。在这里,我们以喂食高脂饮食(HFD)的小鼠作为肥胖模型,首先检测到HFD卵母细胞中活性氧(ROS)含量增加,Sirt3表达降低。我们进一步观察到,在对照卵母细胞中特异性敲低Sirt3会提高ROS水平,而Sirt3过表达则会减弱HFD卵母细胞中的ROS产生,并显著抑制肥胖模型中报道的纺锤体紊乱和染色体错配表型。候选筛选显示,超氧化物歧化酶(SOD2K68)赖氨酸68位点的乙酰化状态取决于卵母细胞中的Sirt3去乙酰化酶活性,模拟乙酰化突变体SOD2K68Q会导致细胞内ROS增加近三倍。此外,我们发现HFD卵母细胞中SOD2K68的乙酰化水平增加了约80%,重要的是,非乙酰化模拟突变体SOD2K68R能够部分挽救其缺陷表型。总之,我们的数据表明Sirt3是卵母细胞发育过程中调节ROS稳态的重要因子,并表明Sirt3依赖的SOD2去乙酰化对母体肥胖条件下卵母细胞的氧化应激和减数分裂缺陷具有保护作用。