首页> 美国卫生研究院文献>International Journal of Molecular Sciences >A Link between Genetic Disorders and Cellular Impairment Using Human Induced Pluripotent Stem Cells to Reveal the Functional Consequences of Copy Number Variations in the Central Nervous System—A Close Look at Chromosome 15
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A Link between Genetic Disorders and Cellular Impairment Using Human Induced Pluripotent Stem Cells to Reveal the Functional Consequences of Copy Number Variations in the Central Nervous System—A Close Look at Chromosome 15

机译:遗传疾病与细胞损伤之间的联系采用人诱导多能干细胞揭示中枢神经系统拷贝数变异的功能后果 - 染色体15

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摘要

Recent cutting-edge human genetics technology has allowed us to identify copy number variations (CNVs) and has provided new insights for understanding causative mechanisms of human diseases. A growing number of studies show that CNVs could be associated with physiological mechanisms linked to evolutionary trigger, as well as to the pathogenesis of various diseases, including cancer, autoimmune disease and mental disorders such as autism spectrum disorders, schizophrenia, intellectual disabilities or attention-deficit/hyperactivity disorder. Their incomplete penetrance and variable expressivity make diagnosis difficult and hinder comprehension of the mechanistic bases of these disorders. Additional elements such as co-presence of other CNVs, genomic background and environmental factors are involved in determining the final phenotype associated with a CNV. Genetically engineered animal models are helpful tools for understanding the behavioral consequences of CNVs. However, the genetic background and the biology of these animal model systems have sometimes led to confusing results. New cellular models obtained through somatic cellular reprogramming technology that produce induced pluripotent stem cells (iPSCs) from human subjects are being used to explore the mechanisms involved in the pathogenic consequences of CNVs. Considering the vast quantity of CNVs found in the human genome, we intend to focus on reviewing the current literature on the use of iPSCs carrying CNVs on chromosome 15, highlighting advantages and limits of this system with respect to mouse model systems.
机译:最近的尖端人类遗传技术使我们能够识别拷贝数变异(CNV),并为了解人类疾病的致病机制提供了新的见解。越来越多的研究表明,CNV可能与与进化触发相关的生理机制相关联,以及各种疾病的发病机制,包括癌症,自身免疫性疾病和精神疾病,如自闭症谱系障碍,精神分裂症,智力障碍或注意力缺陷/多动障碍。它们不完全的渗透率和可变性富集性使诊断困难和妨碍这些疾病的机械基础的理解。诸如其他CNV的共同存在,基因组背景和环境因素的其他元素参与确定与CNV相关的最终表型。转基因动物模型是有助于理解CNVS的行为后果的有用工具。然而,这些动物模型系统的遗传背景和生物学有时会导致令人困惑的结果。通过制备来自人受试者的诱导多能干细胞(IPSC)的体细胞对细胞重编程技术获得的新细胞模型用于探讨CNVs致病后果的机制。考虑到人类基因组中发现的大量CNV,我们打算专注于审查当前关于使用IPSC在染色体15上携带CNV的文献,突出显示该系统的优点和限制了小鼠模型系统。

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