成像转录因子动力学与先进的荧光显微镜方法

IF 2.6 Q2 Medicine
Paula Verneri , Juan José Romero , María Cecilia De Rossi , Yanina Alvarez , Camila Oses , Alejandra Guberman , Valeria Levi
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引用次数: 2

摘要

多能干细胞(PSCs)具有自我更新能力,能够根据发育线索从三种胚层衍生出所有类型的细胞,是再生医学的重要前景。多能性取决于特定的转录因子(TFs),这些转录因子可以诱导维持未分化状态所需的基因,并抑制与分化相关的其他基因。转录机制和调控成分(如tf)在其靶基因上是动态募集的,因此探索其在活细胞中的动态以了解转录输出是必要的。非侵入性和非常敏感的荧光显微镜方法使活体标本中tf的动态可视化成为可能,补充了从固定标本和批量分析中提取的信息。在这项工作中,我们简要地描述了这些显微镜方法的基础,并回顾了它们如何有助于我们了解从单细胞到整个生物体的各种系统中与胚胎发育和细胞分化相关的tf功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Imaging transcription factors dynamics with advanced fluorescence microscopy methods

Pluripotent stem cells (PSCs) are capable of self-renewing and producing all cell types derived from the three germ layers in response to developmental cues, constituting an important promise for regenerative medicine. Pluripotency depends on specific transcription factors (TFs) that induce genes required to preserve the undifferentiated state and repress other genes related to differentiation. The transcription machinery and regulatory components such as TFs are recruited dynamically on their target genes making it essential exploring their dynamics in living cells to understand the transcriptional output. Non-invasive and very sensitive fluorescence microscopy methods are making it possible visualizing the dynamics of TFs in living specimens, complementing the information extracted from studies in fixed specimens and bulk assays. In this work, we briefly describe the basis of these microscopy methods and review how they contributed to our knowledge of the function of TFs relevant to embryo development and cell differentiation in a variety of systems ranging from single cells to whole organisms.

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来源期刊
Mechanisms of Development
Mechanisms of Development 生物-发育生物学
CiteScore
3.60
自引率
0.00%
发文量
0
审稿时长
12.4 weeks
期刊介绍: Mechanisms of Development is an international journal covering the areas of cell biology and developmental biology. In addition to publishing work at the interphase of these two disciplines, we also publish work that is purely cell biology as well as classical developmental biology. Mechanisms of Development will consider papers in any area of cell biology or developmental biology, in any model system like animals and plants, using a variety of approaches, such as cellular, biomechanical, molecular, quantitative, computational and theoretical biology. Areas of particular interest include: Cell and tissue morphogenesis Cell adhesion and migration Cell shape and polarity Biomechanics Theoretical modelling of cell and developmental biology Quantitative biology Stem cell biology Cell differentiation Cell proliferation and cell death Evo-Devo Membrane traffic Metabolic regulation Organ and organoid development Regeneration Mechanisms of Development does not publish descriptive studies of gene expression patterns and molecular screens; for submission of such studies see Gene Expression Patterns.
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