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从数字和运动角度理解先进显微镜下转录因子发病机制

Of numbers and movement - understanding transcription factor pathogenesis by advanced microscopy.

机构信息

MRC Human Genetics Unit, University of Edinburgh, Edinburgh EH4 1XU, UK

MRC Human Genetics Unit, University of Edinburgh, Edinburgh EH4 1XU, UK.

出版信息

Dis Model Mech. 2020 Dec 29;13(12):dmm046516. doi: 10.1242/dmm.046516.

Abstract

Transcription factors (TFs) are life-sustaining and, therefore, the subject of intensive research. By regulating gene expression, TFs control a plethora of developmental and physiological processes, and their abnormal function commonly leads to various developmental defects and diseases in humans. Normal TF function often depends on gene dosage, which can be altered by copy-number variation or loss-of-function mutations. This explains why TF haploinsufficiency (HI) can lead to disease. Since aberrant TF numbers frequently result in pathogenic abnormalities of gene expression, quantitative analyses of TFs are a priority in the field. single-molecule methodologies have significantly aided the identification of links between TF gene dosage and transcriptional outcomes. Additionally, advances in quantitative microscopy have contributed mechanistic insights into normal and aberrant TF function. However, to understand TF biology, TF-chromatin interactions must be characterised , in a tissue-specific manner and in the context of both normal and altered TF numbers. Here, we summarise the advanced microscopy methodologies most frequently used to link TF abundance to function and dissect the molecular mechanisms underlying TF HIs. Increased application of advanced single-molecule and super-resolution microscopy modalities will improve our understanding of how TF HIs drive disease.

摘要

转录因子(TFs)是维持生命所必需的,因此也是研究的重点。通过调节基因表达,TFs 控制着大量的发育和生理过程,其功能异常通常会导致人类出现各种发育缺陷和疾病。TF 的正常功能通常依赖于基因剂量,而基因剂量可以通过拷贝数变异或功能丧失突变来改变。这解释了为什么 TF 单倍不足(HI)会导致疾病。由于异常的 TF 数量经常导致基因表达的致病性异常,因此对 TF 的定量分析是该领域的首要任务。单分子方法极大地帮助确定了 TF 基因剂量与转录结果之间的联系。此外,定量显微镜技术的进步为正常和异常 TF 功能的机制提供了深入的见解。然而,为了了解 TF 生物学,必须以组织特异性的方式并在正常和改变的 TF 数量的背景下,对 TF-染色质相互作用进行表征。在这里,我们总结了最常用于将 TF 丰度与功能联系起来的先进显微镜方法,并剖析了 TF HI 背后的分子机制。更多地应用先进的单分子和超分辨率显微镜模式将提高我们对 TF HI 如何导致疾病的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3d2/7790199/61ea4c5881ea/dmm-13-046516-g1.jpg

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