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利用RNA测序了解精神分裂症和其他神经疾病中的复杂转录组动态变化。

Understanding complex transcriptome dynamics in schizophrenia and other neurological diseases using RNA sequencing.

作者信息

Wang Xi, Cairns Murray J

机构信息

School of Biomedical Sciences and Pharmacy, Faculty of Health and Medicine, The University of Newcastle, Callaghan, New South Wales, Australia.

School of Biomedical Sciences and Pharmacy, Faculty of Health and Medicine, The University of Newcastle, Callaghan, New South Wales, Australia; The Schizophrenia Research Institute, Sydney, Australia.

出版信息

Int Rev Neurobiol. 2014;116:127-52. doi: 10.1016/B978-0-12-801105-8.00006-0.

Abstract

How the human brain develops and adapts with its trillions of functionally integrated synapses remains one of the greatest mysteries of life. With tremendous advances in neuroscience, genetics, and molecular biology, we are beginning to appreciate the scope of this complexity and define some of the parameters of the systems that make it possible. These same tools are also leading to advances in our understanding of the pathophysiology of neurocognitive and neuropsychiatric disorders. Like the substrate for these problems, the etiology is usually complex-involving an array of genetic and environmental influences. To resolve these influences and derive better interventions, we need to reveal every aspect of this complexity and model their interactions and define the systems and their regulatory structure. This is particularly important at the tissue-specific molecular interface between the underlying genetic and environmental influence defined by the transcriptome. Recent advances in transcriptome analysis facilitated by RNA sequencing (RNA-Seq) can provide unprecedented insight into the functional genomics of neurological disorders. In this review, we outline the advantages of this approach and highlight some early application of this technology in the investigation of the neuropathology of schizophrenia. Recent progress of RNA-Seq studies in schizophrenia has shown that there is extraordinary transcriptome dynamics with significant levels of alternative splicing. These studies only scratch the surface of this complexity and therefore future studies with greater depth and samples size will be vital to fully explore transcriptional diversity and its underlying influences in schizophrenia and provide the basis for new biomarkers and improved treatments.

摘要

人类大脑如何通过其数万亿个功能整合的突触进行发育和适应,仍然是生命中最大的谜团之一。随着神经科学、遗传学和分子生物学的巨大进步,我们开始认识到这种复杂性的范围,并确定了一些使其成为可能的系统参数。这些相同的工具也推动了我们对神经认知和神经精神疾病病理生理学的理解。与这些问题的基础一样,病因通常很复杂,涉及一系列遗传和环境影响。为了解决这些影响并得出更好的干预措施,我们需要揭示这种复杂性的各个方面,对它们的相互作用进行建模,并定义系统及其调节结构。这在由转录组定义的潜在遗传和环境影响之间的组织特异性分子界面上尤为重要。由RNA测序(RNA-Seq)推动的转录组分析的最新进展可以为神经疾病的功能基因组学提供前所未有的见解。在这篇综述中,我们概述了这种方法的优势,并强调了该技术在精神分裂症神经病理学研究中的一些早期应用。精神分裂症RNA-Seq研究的最新进展表明,存在非凡的转录组动态变化,具有显著水平的可变剪接。这些研究只是触及了这种复杂性的表面,因此未来更深入、样本量更大的研究对于充分探索精神分裂症中的转录多样性及其潜在影响,并为新的生物标志物和改进治疗提供基础至关重要。

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