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Epigenetics in neurodegeneration: a new layer of complexity.

机译:神经变性的表观遗传学:新的复杂性层。

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摘要

Several diseases are known to have a multifactorial origin, depending not only on genetic but also on environmental factors. They are called "complex disorders" and include cardiovascular disease, cancer, diabetes, and neuropsychiatric and neurodegenerative diseases. In the latter class, Alzheimer's (AD) and Parkinson's diseases (PD) are by far the most common in the elderly and constitute a tremendous social and economical problem. Both disorders present familial and sporadic forms and although some polymorphisms and risk factors have been associated with AD and PD, the precise way by which the environment contributes to neurodegeneration is still unclear. Recent studies suggest that environmental factors may contribute for neurodegeneration through induction of epigenetic modifications, such as DNA methylation, and chromatin remodeling, which may induce alterations in gene expression programs. Epigenetics, which refers to any process that alters gene activity without changing the actual DNA sequence, and leads to modifications that can be transmitted to daughter cells, is a relatively novel area of research that is currently attracting a high level of interest. Epigenetic modulation is present since the prenatal stages, and the aging process is now accepted to be associated with a loss of phenotypic plasticity to epigenetic modifications. Since aging is the most important risk factor for idiopathic AD and PD, it is expected that epigenetic alterations on DNA and/or chromatin structure may also accumulate in neurodegeneration, accounting at least in part to the etiology of these disorders.
机译:已知几种疾病具有多因素起源,不仅取决于遗传而且还取决于环境因素。它们被称为“复杂疾病”,包括心血管疾病,癌症,糖尿病以及神经精神疾病和神经退行性疾病。在后一类中,阿尔茨海默氏病和帕金森氏病到目前为止是老年人中最常见的疾病,构成了巨大的社会和经济问题。两种疾病都以家族和散发形式出现,尽管某些多态性和危险因素与AD和PD有关,但环境导致神经退行性变的确切方式仍不清楚。最近的研究表明,环境因素可能通过诱导表观遗传修饰(例如DNA甲基化和染色质重塑)而导致神经退行性变,这可能会诱导基因表达程序的改变。表观遗传学是指在不改变实际DNA序列的情况下改变基因活性并导致可转移到子代细胞的修饰的任何过程,是一个相对较新的研究领域,目前引起了广泛的关注。从产前阶段开始就存在表观遗传调节,并且衰老过程现在被认为与表观遗传修饰的表型可塑性丧失有关。由于衰老是特发性AD和PD的最重要危险因素,因此预期DNA和/或染色质结构的表观遗传学改变也可能在神经退行性疾病中积聚,至少部分原因是这些疾病的病因。

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