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首页> 外文期刊>Journal of Molecular Biology >Determining the Limitations and Benefits of Noise in Gene Regulation and Signal Transduction through Single Cell, Microscopy-Based Analysis
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Determining the Limitations and Benefits of Noise in Gene Regulation and Signal Transduction through Single Cell, Microscopy-Based Analysis

机译:通过单细胞,基于显微镜分析确定基因调控中噪声的限制和益处和信号转导

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摘要

Stochastic fluctuations, termed "noise," in the level of biological molecules can greatly impact cellular functions. While biological noise can sometimes be detrimental, recent studies have provided an increasing number of examples in which biological noise can be functionally beneficial. Rather than provide an exhaustive review of the growing literature in this field, in this review, we focus on single-cell studies based on quantitative microscopy that have generated a deeper understanding of the sources, characteristics, limitations, and benefits of biological noise. Specifically, we highlight studies showing how noise can help coordinate the expression of multiple downstream target genes, impact the channel capacity of signaling networks, and interact synergistically with oscillatory dynamics to enhance the sensitivity of signal processing. We conclude with a discussion of current challenges and future opportunities. Published by Elsevier Ltd.
机译:随机波动,被称为“噪音”,在生物分子水平中可以大大冲击细胞功能。 虽然生物噪声有时可能是有害的,但最近的研究提供了越来越多的例子,其中生物噪声可以在功能上有益。 在本次综述中,我们在本领域的日益增长的文献中提供了详尽的审查,我们专注于基于定量显微镜的单细胞研究,这些显微镜已经产生了对生物噪声的来源,特征,局限性和益处的更深入了解。 具体而言,我们突出了显示噪声如何有助于协调多个下游目标基因的表达的研究,影响信令网络的信道容量,并用振荡动力学协同互动,以提高信号处理的灵敏度。 我们讨论了目前挑战和未来机会的讨论。 elsevier有限公司出版

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