نتایج جستجو برای: epigenetic

تعداد نتایج: 38423  

2018
Miriam G. Jasiulionis

Epigenetics refers to the study of mechanisms controlling the chromatin structure, which has fundamental role in the regulation of gene expression and genome stability. Epigenetic marks, such as DNA methylation and histone modifications, are established during embryonic development and epigenetic profiles are stably inherited during mitosis, ensuring cell differentiation and fate. Under the eff...

2012
Sonja Althammer Amadís Pagès Eduardo Eyras

The epigenetic regulation of gene expression involves multiple factors. The synergistic or antagonistic action of these factors has suggested the existence of an epigenetic code for gene regulation. Highthroughput sequencing (HTS) provides an opportunity to explore this code and to build quantitative models of gene regulation based on epigenetic differences between specific cellular conditions....

Journal: :Physiological reviews 2011
Johannes Gräff Dohoon Kim Matthew M Dobbin Li-Huei Tsai

Over the past decade, it has become increasingly obvious that epigenetic mechanisms are an integral part of a multitude of brain functions that range from the development of the nervous system over basic neuronal functions to higher order cognitive processes. At the same time, a substantial body of evidence has surfaced indicating that several neurodevelopmental, neurodegenerative, and neuropsy...

Journal: :FASEB journal : official publication of the Federation of American Societies for Experimental Biology 2016
Sanne D van Otterdijk Karin B Michels

Epigenetics plays an important role in orchestrating key biologic processes. Epigenetic marks, including DNA methylation, histones, chromatin structure, and noncoding RNAs, are modified throughout life in response to environmental and behavioral influences. With each new generation, DNA methylation patterns are erased in gametes and reset after fertilization, probably to prevent these epigeneti...

Journal: :JAMA neurology 2013
Irfan A Qureshi Mark F Mehler

The burgeoning field of epigenetics is making a significant impact on our understanding of brain evolution, development, and function. In fact, it is now clear that epigenetic mechanisms promote seminal neurobiological processes, ranging from neural stem cell maintenance and differentiation to learning and memory. At the molecular level, epigenetic mechanisms regulate the structure and activity...

2016
Samuel Peña-Llopis Yihong Wan Elisabeth D. Martinez

Epigenetic enzymes are at the nexus of cellular regulatory cascades and can drive cancer-specific deregulation at all stages of the oncogenic process, yet little is known about their prognostic value in human patients. Here, we used qRT-PCR to profile at high resolution the expression of fifty-five epigenetic genes in over one hundred human breast cancer samples and patient-matched benign tissu...

Journal: :The American journal of clinical nutrition 2011
Anne Gabory Linda Attig Claudine Junien

The ways in which epigenetic modifications fix the effects of early environmental events, ensuring sustained responses to transient stimuli that result in modified gene expression patterns and phenotypes later in life, are a topic of considerable interest. This article focuses on recently discovered mechanisms and calls into question prevailing views about the dynamics, positions, and functions...

2011
Dianne Ford Luisa A. Wakeling

Epigenetic changes may be causal in the ageing process and may be influenced by diet, providing opportunities to improve health in later life. The aim of this review is to provide an overview of several areas of research relevant to this topic and to explore a hypothesis relating to a possible role of epigenetic effects, mediated by sirtuin 1, in the beneficial effects of dietary restriction, i...

2015
Awad Shamma Hayato Muranaka

Genetic and epigenetic alterations have important implications inhuman cancer. Genetic aberrations are associated with wide spread variations in deregulation of cellular functions that lead to cancer. However, there has been clear evidence that epigenetic alterations have profound influence on malignant progression. The genetic and epigenetic alterations have been long considered as two indepen...

2015
Manisha Sachan Manpreet Kaur

Epigenetic modifications and alterations in chromatin structure and function contribute to the cumulative changes observed as normal cells undergo malignant transformation. These modifications and enzymes (DNA methyltransferases, histone deacetylases, histone methyltransferases, and demethylases) related to them have been deeply studied to develop new drugs, epigenome-targeted therapies and new...

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