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第2场:个性化营养。表观基因组学:理解个体差异的基础?

Session 2: Personalised nutrition. Epigenomics: a basis for understanding individual differences?

作者信息

Mathers John C

机构信息

Human Nutrition Research Centre, School of Clinical Medical Sciences, Institute for Ageing and Health, Newcastle University, Framlington Place, Newcastle upon Tyne NE2 4HH, UK.

出版信息

Proc Nutr Soc. 2008 Nov;67(4):390-4. doi: 10.1017/S0029665108008744.

Abstract

Epigenetics encompasses changes to marks on the genome that are copied from one cell generation to the next, which may alter gene expression but which do not involve changes in the primary DNA sequence. These marks include DNA methylation (methylation of cytosines within CpG dinucleotides) and post-translational modifications (acetylation, methylation, phosphorylation and ubiquitination) of the histone tails protruding from nucleosome cores. The sum of genome-wide epigenetic patterns is known as the epigenome. It is hypothesised that altered epigenetic marking is a means through which evidence of environmental exposures (including nutritional status and dietary exposure) is received and recorded by the genome. At least some of these epigenetic marks are remembered through multiple cell generations and their effects may be revealed in altered gene expression and cell function. Altered epigenetic marking allows plasticity of phenotype in a fixed genotype. Despite their identical genotypes, monozygotic twins show increasing epigenetic diversity with age and with divergent lifestyles. Differences in epigenetic markings may explain some inter-individual variation in disease risk and in response to nutritional interventions.

摘要

表观遗传学包括基因组上标记的变化,这些标记会从一个细胞世代复制到下一个细胞世代,这可能会改变基因表达,但不涉及初级DNA序列的变化。这些标记包括DNA甲基化(CpG二核苷酸内的胞嘧啶甲基化)以及从核小体核心伸出的组蛋白尾巴的翻译后修饰(乙酰化、甲基化、磷酸化和泛素化)。全基因组表观遗传模式的总和被称为表观基因组。据推测,表观遗传标记的改变是基因组接收和记录环境暴露(包括营养状况和饮食暴露)证据的一种方式。这些表观遗传标记中的至少一些会在多个细胞世代中被记住,它们的影响可能会在基因表达和细胞功能的改变中显现出来。表观遗传标记的改变使固定基因型的表型具有可塑性。尽管同卵双胞胎具有相同的基因型,但随着年龄增长和生活方式的不同,他们的表观遗传多样性也在增加。表观遗传标记的差异可能解释了个体在疾病风险和对营养干预反应方面的一些个体间差异。

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