DNA methylation biomarkers of intellectual/developmental disability across the lifespan.

IF 4.1 2区 医学 Q1 CLINICAL NEUROLOGY
Janine M LaSalle
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Abstract

Epigenetic mechanisms, including DNA methylation, act at the interface of genes and environment by allowing a static genome to respond and adapt to a dynamic environment during the lifespan of an individual. Genome-wide DNA methylation analyses on a wide range of human biospecimens are beginning to identify epigenetic biomarkers that can predict risk of intellectual/developmental disabilities (IDD). DNA methylation-based epigenetic signatures are becoming clinically useful in categorizing benign from pathogenic genetic variants following exome sequencing. While DNA methylation marks differ by tissue source, recent studies have shown that accessible perinatal tissues, such as placenta, cord blood, newborn blood spots, and cell free DNA may serve as accessible surrogate tissues for testing epigenetic biomarkers relevant to understanding genetic, environmental, and gene by environment interactions on the developing brain. These DNA methylation signatures may also provide important information about the biological pathways that become dysregulated prior to disease progression that could be used to develop early pharmacological interventions. Future applications could involve preventative screenings using DNA methylation biomarkers during pregnancy or the newborn period for IDDs and other neurodevelopmental disorders. DNA methylation biomarkers in adolescence and adulthood are also likely to be clinically useful for tracking biological aging or co-occurring health conditions that develop across the lifespan. In conclusion, DNA methylation biomarkers are expected to become more common in clinical diagnoses of IDD, to improve understanding of complex IDD etiologies, to improve endpoints for clinical trials, and to monitor potential health concerns for individuals with IDD as they age.

智力/发育障碍的DNA甲基化生物标志物。
表观遗传机制,包括DNA甲基化,在基因和环境的界面上起作用,允许静态基因组在个体的生命周期中响应和适应动态环境。对广泛的人类生物标本进行全基因组DNA甲基化分析,开始确定可以预测智力/发育障碍(IDD)风险的表观遗传生物标志物。基于DNA甲基化的表观遗传特征在外显子组测序后的良性和致病性遗传变异分类中变得临床有用。虽然DNA甲基化标记因组织来源而异,但最近的研究表明,可获得的围产期组织,如胎盘、脐带血、新生儿血斑和游离细胞DNA,可作为可获得的替代组织,用于检测与理解遗传、环境和基因通过环境相互作用对发育中的大脑相关的表观遗传生物标志物。这些DNA甲基化特征也可能提供疾病进展前失调的生物学途径的重要信息,可用于开发早期药物干预。未来的应用可能包括在怀孕或新生儿期间使用DNA甲基化生物标志物进行idd和其他神经发育障碍的预防性筛查。青春期和成年期的DNA甲基化生物标记物也可能在临床上用于跟踪生物衰老或在整个生命周期中发展的共同发生的健康状况。总之,DNA甲基化生物标志物有望在IDD的临床诊断中变得更加普遍,以提高对复杂的IDD病因的理解,改善临床试验的终点,并监测IDD患者随着年龄增长的潜在健康问题。
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来源期刊
CiteScore
7.60
自引率
4.10%
发文量
58
审稿时长
>12 weeks
期刊介绍: Journal of Neurodevelopmental Disorders is an open access journal that integrates current, cutting-edge research across a number of disciplines, including neurobiology, genetics, cognitive neuroscience, psychiatry and psychology. The journal’s primary focus is on the pathogenesis of neurodevelopmental disorders including autism, fragile X syndrome, tuberous sclerosis, Turner Syndrome, 22q Deletion Syndrome, Prader-Willi and Angelman Syndrome, Williams syndrome, lysosomal storage diseases, dyslexia, specific language impairment and fetal alcohol syndrome. With the discovery of specific genes underlying neurodevelopmental syndromes, the emergence of powerful tools for studying neural circuitry, and the development of new approaches for exploring molecular mechanisms, interdisciplinary research on the pathogenesis of neurodevelopmental disorders is now increasingly common. Journal of Neurodevelopmental Disorders provides a unique venue for researchers interested in comparing and contrasting mechanisms and characteristics related to the pathogenesis of the full range of neurodevelopmental disorders, sharpening our understanding of the etiology and relevant phenotypes of each condition.
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