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本文引用的文献

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Chromatin remodeling in the aging genome of Drosophila.果蝇衰老基因组中的染色质重塑。
Aging Cell. 2010 Dec;9(6):971-8. doi: 10.1111/j.1474-9726.2010.00624.x. Epub 2010 Oct 21.
2
Genome-wide distribution of macroH2A1 histone variants in mouse liver chromatin.在小鼠肝染色质中宏 H2A1 组蛋白变体的全基因组分布。
Mol Cell Biol. 2010 Dec;30(23):5473-83. doi: 10.1128/MCB.00518-10. Epub 2010 Oct 11.
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Epigenetic changes play critical role in age-associated dysfunctions of the liver.表观遗传变化在与年龄相关的肝脏功能障碍中起着关键作用。
Aging Cell. 2010 Oct;9(5):895-910. doi: 10.1111/j.1474-9726.2010.00617.x.
4
Senescent mouse cells fail to overtly regulate the HIRA histone chaperone and do not form robust Senescence Associated Heterochromatin Foci.衰老的老鼠细胞不能明显调节 HIRA 组蛋白伴侣,也不能形成稳定的衰老相关异染色质焦点。
Cell Div. 2010 Jun 22;5:16. doi: 10.1186/1747-1028-5-16.
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Ionizing radiation-induced long-term expression of senescence markers in mice is independent of p53 and immune status.电离辐射诱导的小鼠衰老标志物的长期表达与 p53 和免疫状态无关。
Aging Cell. 2010 Jun;9(3):398-409. doi: 10.1111/j.1474-9726.2010.00567.x. Epub 2010 Mar 13.
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Human aging-associated DNA hypermethylation occurs preferentially at bivalent chromatin domains.人类衰老相关的 DNA 高甲基化优先发生在二价染色质结构域。
Genome Res. 2010 Apr;20(4):434-9. doi: 10.1101/gr.103101.109. Epub 2010 Mar 10.
7
Age-dependent DNA methylation of genes that are suppressed in stem cells is a hallmark of cancer.衰老相关的干细胞中被抑制基因的 DNA 甲基化是癌症的一个特征。
Genome Res. 2010 Apr;20(4):440-6. doi: 10.1101/gr.103606.109. Epub 2010 Mar 10.
8
Distinctive patterns of age-dependent hypomethylation in interspersed repetitive sequences.散在重复序列中与年龄相关的去甲基化的独特模式。
Physiol Genomics. 2010 Apr 1;41(2):194-200. doi: 10.1152/physiolgenomics.00146.2009. Epub 2010 Feb 9.
9
DNA methylation pattern changes upon long-term culture and aging of human mesenchymal stromal cells.人类间充质基质细胞长期培养和衰老时 DNA 甲基化模式发生变化。
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The essential function of HP1 beta: a case of the tail wagging the dog?HP1β 的基本功能:本末倒置?
Trends Biochem Sci. 2010 Feb;35(2):115-23. doi: 10.1016/j.tibs.2009.09.003.

年龄相关的小鼠和灵长类组织异染色质标记增加。

Age-associated increase in heterochromatic marks in murine and primate tissues.

机构信息

Department of Molecular Biology, Cell Biology and Biochemistry, Brown University, 70 Ship Street, Providence, RI 02903, USA.

出版信息

Aging Cell. 2011 Apr;10(2):292-304. doi: 10.1111/j.1474-9726.2010.00666.x. Epub 2010 Dec 30.

DOI:10.1111/j.1474-9726.2010.00666.x
PMID:21176091
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3079313/
Abstract

Chromatin is highly dynamic and subject to extensive remodeling under many physiologic conditions. Changes in chromatin that occur during the aging process are poorly documented and understood in higher organisms, such as mammals. We developed an immunofluorescence assay to quantitatively detect, at the single cell level, changes in the nuclear content of chromatin-associated proteins. We found increased levels of the heterochromatin-associated proteins histone macro H2A (mH2A) and heterochromatin protein 1 beta (HP1β) in human fibroblasts during replicative senescence in culture, and for the first time, an age-associated increase in these heterochromatin marks in several tissues of mice and primates. Mouse lung was characterized by monophasic mH2A expression histograms at both ages, and an increase in mean staining intensity at old age. In the mouse liver, we observed increased age-associated localization of mH2A to regions of pericentromeric heterochromatin. In the skeletal muscle, we found two populations of cells with either low or high mH2A levels. This pattern of expression was similar in mouse and baboon, and showed a clear increase in the proportion of nuclei with high mH2A levels in older animals. The frequencies of cells displaying evidence of increased heterochromatinization are too high to be readily accounted for by replicative or oncogene-induced cellular senescence, and are prominently found in terminally differentiated, postmitotic tissues that are not conventionally thought to be susceptible to senescence. Our findings distinguish specific chromatin states in individual cells of mammalian tissues, and provide a foundation to investigate further the progressive epigenetic changes that occur during aging.

摘要

染色质高度动态,在许多生理条件下会发生广泛的重塑。在高等生物(如哺乳动物)中,衰老过程中染色质的变化记录和理解甚少。我们开发了一种免疫荧光检测法,可在单细胞水平定量检测与染色质相关的蛋白的核内含量变化。我们发现,在培养过程中的复制性衰老中,人成纤维细胞中的异染色质相关蛋白组蛋白巨 H2A(mH2A)和异染色质蛋白 1β(HP1β)水平升高,这是首次在小鼠和灵长类动物的几种组织中发现与年龄相关的这些异染色质标记增加。小鼠肺在两个年龄段的 mH2A 表达直方图均呈单相,并且老年时平均染色强度增加。在小鼠肝脏中,我们观察到 mH2A 与着丝粒周围异染色质区域的年龄相关定位增加。在骨骼肌中,我们发现两种细胞群,其 mH2A 水平要么低,要么高。这种表达模式在小鼠和狒狒中相似,并且在老年动物中,高 mH2A 水平的核比例明显增加。表现出异染色质化增加的细胞频率太高,无法轻易归因于复制或癌基因诱导的细胞衰老,并且主要存在于终末分化、有丝分裂后的组织中,这些组织通常不被认为易受衰老影响。我们的研究结果区分了哺乳动物组织中单个细胞的特定染色质状态,并为进一步研究衰老过程中发生的渐进性表观遗传变化奠定了基础。