Suppr超能文献

衰老与癌症中增殖稳态改变的遗传学与表观遗传学

The genetics and epigenetics of altered proliferative homeostasis in ageing and cancer.

作者信息

Martin George M

机构信息

Department of Pathology, University of Washington, Seattle, WA 98195, USA.

出版信息

Mech Ageing Dev. 2007 Jan;128(1):9-12. doi: 10.1016/j.mad.2006.11.003. Epub 2006 Nov 20.

Abstract

Ageing mammals are subject to an amazing array of aberrations in proliferative homeostasis. These are of two basic types: the post-maturational failure to adequately replace effete somatic cells (atrophies) and excessive proliferations of somatic cells (hyperplasias). To a surprising degree, these occur side by side within the same tissues and are features of numerous mammalian geriatric disorders. Atrophy is the likely usual initial event, the proliferative response perhaps developing as a secondary, compensatory, initially adaptive reaction. We have little understanding of why this putative compensatory reaction so often fails to be appropriately regulated in ageing mammals, leading to such pathologies as chronic inflammation, fibrosis, metaplasia and neoplasia. Advances in formal genetic analysis, mutagenesis, stem cell biology and epigenetics are likely to provide major new understanding. Stochastic epigenetic shifts in gene expression are of growing interest, particularly in explaining intra-specific variations on rates and patterns of ageing. Nature may well have evolved such random fluctuations in gene expression as a type of group-selectionist adaptive strategy to cope with diverse stochastic environmental challenges. Alternatively, such background "noise" in transcription and translation may simply reflect a type of informational entropy.

摘要

衰老的哺乳动物在增殖稳态方面会出现一系列惊人的异常情况。这些异常情况基本分为两种类型:成熟后无法充分替换衰老的体细胞(萎缩)以及体细胞过度增殖(增生)。在令人惊讶的程度上,这些情况在同一组织中同时出现,并且是众多哺乳动物老年疾病的特征。萎缩可能是常见的初始事件,增殖反应可能作为继发性、代偿性、最初具有适应性的反应而发展。我们对为什么这种假定的代偿反应在衰老的哺乳动物中常常无法得到适当调节知之甚少,从而导致诸如慢性炎症、纤维化、化生和肿瘤形成等病理状况。形式遗传学分析、诱变、干细胞生物学和表观遗传学的进展可能会带来重大的新认识。基因表达中的随机表观遗传变化越来越受到关注,特别是在解释衰老速率和模式的种内差异方面。自然很可能已经将这种基因表达的随机波动进化为一种群体选择适应性策略,以应对各种随机的环境挑战。或者,转录和翻译中的这种背景“噪音”可能仅仅反映了一种信息熵。

相似文献

1
The genetics and epigenetics of altered proliferative homeostasis in ageing and cancer.
Mech Ageing Dev. 2007 Jan;128(1):9-12. doi: 10.1016/j.mad.2006.11.003. Epub 2006 Nov 20.
2
Stochastic modulations of the pace and patterns of ageing: impacts on quasi-stochastic distributions of multiple geriatric pathologies.
Mech Ageing Dev. 2012 Apr;133(4):107-11. doi: 10.1016/j.mad.2011.09.001. Epub 2011 Sep 22.
3
Biomolecular bases of the senescence process and cancer. A new approach to oncological treatment linked to ageing.
Ageing Res Rev. 2015 Sep;23(Pt B):125-38. doi: 10.1016/j.arr.2015.03.004. Epub 2015 Apr 4.
4
Centenarians as a model to discover genetic and epigenetic signatures of healthy ageing.
Mech Ageing Dev. 2018 Sep;174:95-102. doi: 10.1016/j.mad.2017.10.004. Epub 2017 Oct 31.
5
Epigenetic vulnerability and the environmental influence on health.
Exp Biol Med (Maywood). 2013 Aug 1;238(8):859-65. doi: 10.1177/1535370213490630. Epub 2013 Jul 4.
6
Epigenetic regulation of gene expression in the inflammatory response and relevance to common diseases.
J Periodontol. 2008 Aug;79(8 Suppl):1514-9. doi: 10.1902/jop.2008.080172.
7
Epigenetic perturbations in aging stem cells.
Mamm Genome. 2016 Aug;27(7-8):396-406. doi: 10.1007/s00335-016-9645-8. Epub 2016 May 26.
8
Nutritional modulation of ageing: genomic and epigenetic approaches.
Mech Ageing Dev. 2006 Jun;127(6):584-9. doi: 10.1016/j.mad.2006.01.018. Epub 2006 Mar 2.
10
Epigenetic inheritance of proteostasis and ageing.
Essays Biochem. 2016 Oct 15;60(2):191-202. doi: 10.1042/EBC20160025.

引用本文的文献

1
The evolution of cancer and ageing: a history of constraint.
Nat Rev Cancer. 2025 Aug 26. doi: 10.1038/s41568-025-00861-4.
2
Somatic mutations in aging and disease.
Geroscience. 2024 Oct;46(5):5171-5189. doi: 10.1007/s11357-024-01113-3. Epub 2024 Mar 15.
3
Stochastic modulations of the pace and patterns of ageing: impacts on quasi-stochastic distributions of multiple geriatric pathologies.
Mech Ageing Dev. 2012 Apr;133(4):107-11. doi: 10.1016/j.mad.2011.09.001. Epub 2011 Sep 22.
4
A LINE-1 component to human aging: do LINE elements exact a longevity cost for evolutionary advantage?
Mech Ageing Dev. 2010 May;131(5):299-305. doi: 10.1016/j.mad.2010.03.008. Epub 2010 Mar 25.
6
Nuclear effects of ethanol-induced proteasome inhibition in liver cells.
World J Gastroenterol. 2009 Mar 14;15(10):1163-7. doi: 10.3748/wjg.15.1163.

本文引用的文献

2
Genetics of osteoporosis.
Mol Genet Metab. 2006 Aug;88(4):295-306. doi: 10.1016/j.ymgme.2006.04.009. Epub 2006 Jun 9.
3
Epigenetic inactivation of the premature aging Werner syndrome gene in human cancer.
Proc Natl Acad Sci U S A. 2006 Jun 6;103(23):8822-7. doi: 10.1073/pnas.0600645103. Epub 2006 May 24.
4
Diagnosis, screening, prevention, and treatment of osteoporosis.
Mayo Clin Proc. 2006 May;81(5):662-72. doi: 10.4065/81.5.662.
5
Recent advances in the genetics of osteoporosis.
J Musculoskelet Neuronal Interact. 2006 Jan-Mar;6(1):27-35.
6
Cellular senescence in aging primates.
Science. 2006 Mar 3;311(5765):1257. doi: 10.1126/science.1122446. Epub 2006 Feb 2.
7
SA beta Gal staining: biomarker or delusion.
Exp Gerontol. 2005 Oct;40(10):836-8. doi: 10.1016/j.exger.2005.08.005. Epub 2005 Sep 21.
8
Telomere biology in aging and cancer.
J Am Geriatr Soc. 2005 Sep;53(9 Suppl):S292-4. doi: 10.1111/j.1532-5415.2005.53492.x.
9
Support for the immortal strand hypothesis: neural stem cells partition DNA asymmetrically in vitro.
J Cell Biol. 2005 Aug 29;170(5):721-32. doi: 10.1083/jcb.200502073. Epub 2005 Aug 22.
10
Epigenetic differences arise during the lifetime of monozygotic twins.
Proc Natl Acad Sci U S A. 2005 Jul 26;102(30):10604-9. doi: 10.1073/pnas.0500398102. Epub 2005 Jul 11.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验