Literature DB >> 20563319

Environmental signals and transgenerational epigenetics.

Michael K Skinner, Carlos Guerrero-Bosagna.   

Abstract

The ability of an environmental factor or toxicant to promote a phenotype or disease state not only in the individual exposed, but also in subsequent progeny for multiple generations, is termed transgenerational inheritance. The majority of environmental agents do not promote genetic mutations or alterations in DNA sequence, but do have the capacity to alter the epigenome. Although most environmental exposures will influence somatic cells and not allow the transgenerational transmission of a phenotype, the ability of an environmental factor to reprogram the germline epigenome can promote a transgenerational inheritance of phenotypes and disease states. A limited number of critical developmental periods exist when environmental signals can produce a significant epigenetic reprogramming of the germline. In this review, the ability of environmental factors or toxicants to promote epigenetic transgenerational phenotypes is reviewed.

Entities:  

Year:  2009        PMID: 20563319      PMCID: PMC2886501          DOI: 10.2217/epi.09.11

Source DB:  PubMed          Journal:  Epigenomics        ISSN: 1750-192X            Impact factor:   4.778


  62 in total

1.  DNA modification mechanisms and gene activity during development.

Authors:  R Holliday; J E Pugh
Journal:  Science       Date:  1975-01-24       Impact factor: 47.728

Review 2.  Epigenetic regulation in male germ cells.

Authors:  Natasha M Zamudio; Suyinn Chong; Moira K O'Bryan
Journal:  Reproduction       Date:  2008-05-30       Impact factor: 3.906

Review 3.  Adverse effects of the model environmental estrogen diethylstilbestrol are transmitted to subsequent generations.

Authors:  Retha R Newbold; Elizabeth Padilla-Banks; Wendy N Jefferson
Journal:  Endocrinology       Date:  2006-05-11       Impact factor: 4.736

Review 4.  Transgenerational epigenetic inheritance in health and disease.

Authors:  Nadia C Whitelaw; Emma Whitelaw
Journal:  Curr Opin Genet Dev       Date:  2008-08-12       Impact factor: 5.578

Review 5.  Inherited variation at the epigenetic level: paramutation from the plant to the mouse.

Authors:  François Cuzin; Valérie Grandjean; Minoo Rassoulzadegan
Journal:  Curr Opin Genet Dev       Date:  2008-02-15       Impact factor: 5.578

6.  Maternal care associated with methylation of the estrogen receptor-alpha1b promoter and estrogen receptor-alpha expression in the medial preoptic area of female offspring.

Authors:  Frances A Champagne; Ian C G Weaver; Josie Diorio; Sergiy Dymov; Moshe Szyf; Michael J Meaney
Journal:  Endocrinology       Date:  2006-03-02       Impact factor: 4.736

Review 7.  The dynamic epigenetic program in male germ cells: Its role in spermatogenesis, testis cancer, and its response to the environment.

Authors:  Maren Godmann; Romain Lambrot; Sarah Kimmins
Journal:  Microsc Res Tech       Date:  2009-08       Impact factor: 2.769

8.  Transgenerational effects of the endocrine disruptor vinclozolin on the prostate transcriptome and adult onset disease.

Authors:  Matthew D Anway; Michael K Skinner
Journal:  Prostate       Date:  2008-04-01       Impact factor: 4.104

9.  Maternal genistein alters coat color and protects Avy mouse offspring from obesity by modifying the fetal epigenome.

Authors:  Dana C Dolinoy; Jennifer R Weidman; Robert A Waterland; Randy L Jirtle
Journal:  Environ Health Perspect       Date:  2006-04       Impact factor: 9.031

10.  Transgenerational epigenetic programming of the brain transcriptome and anxiety behavior.

Authors:  Michael K Skinner; Matthew D Anway; Marina I Savenkova; Andrea C Gore; David Crews
Journal:  PLoS One       Date:  2008-11-18       Impact factor: 3.240

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  39 in total

Review 1.  Basic concepts of epigenetics: impact of environmental signals on gene expression.

Authors:  Elizabeth A Mazzio; Karam F A Soliman
Journal:  Epigenetics       Date:  2012-02       Impact factor: 4.528

2.  Targets and dynamics of promoter DNA methylation during early mouse development.

Authors:  Julie Borgel; Sylvain Guibert; Yufeng Li; Hatsune Chiba; Dirk Schübeler; Hiroyuki Sasaki; Thierry Forné; Michael Weber
Journal:  Nat Genet       Date:  2010-11-07       Impact factor: 38.330

3.  Natural epigenetic variation in the female great roundleaf bat (Hipposideros armiger) populations.

Authors:  Sen Liu; Keping Sun; Tinglei Jiang; Jennifer P Ho; Bao Liu; Jiang Feng
Journal:  Mol Genet Genomics       Date:  2012-07-08       Impact factor: 3.291

4.  Using a Multi-Stage hESC Model to Characterize BDE-47 Toxicity during Neurogenesis.

Authors:  Hao Chen; Helia Seifikar; Nicholas Larocque; Yvonne Kim; Ibrahim Khatib; Charles J Fernandez; Nicomedes Abello; Joshua F Robinson
Journal:  Toxicol Sci       Date:  2019-06-07       Impact factor: 4.849

Review 5.  Male reproductive health and prostate cancer risk.

Authors:  Thomas J Walsh
Journal:  Curr Opin Urol       Date:  2011-11       Impact factor: 2.309

Review 6.  Multigenerational and transgenerational effects of paternal exposure to drugs of abuse on behavioral and neural function.

Authors:  Lisa R Goldberg; Thomas J Gould
Journal:  Eur J Neurosci       Date:  2018-07-20       Impact factor: 3.386

Review 7.  Epigenetics and nutritional environmental signals.

Authors:  Elizabeth A Mazzio; Karam F A Soliman
Journal:  Integr Comp Biol       Date:  2014-05-26       Impact factor: 3.326

Review 8.  Epigenetics and lifestyle.

Authors:  Jorge Alejandro Alegría-Torres; Andrea Baccarelli; Valentina Bollati
Journal:  Epigenomics       Date:  2011-06       Impact factor: 4.778

Review 9.  Epigenetics, asthma, and allergic diseases: a review of the latest advancements.

Authors:  Stephanie Lovinsky-Desir; Rachel L Miller
Journal:  Curr Allergy Asthma Rep       Date:  2012-06       Impact factor: 4.806

Review 10.  Endocrine disrupting chemicals and the developmental programming of adipogenesis and obesity.

Authors:  Amanda Janesick; Bruce Blumberg
Journal:  Birth Defects Res C Embryo Today       Date:  2011-03
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