中尺度上的生命:自组织的细胞质和核质。

Q1 Biochemistry, Genetics and Molecular Biology
BMC Biophysics Pub Date : 2015-02-25 eCollection Date: 2015-01-01 DOI:10.1186/s13628-015-0018-6
Richard P Sear, Ignacio Pagonabarraga, Andrew Flaus
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引用次数: 17

摘要

该细胞包含高度动态的结构,利用中尺度(100 nm至10 μm)的自组织物理原理。例子包括非膜结合细胞质体,基于细胞骨架的运动网络和多尺度染色质组织。在2014年7月的CECAM研讨会上讨论了中尺度自组织的挑战。生物学家需要观察高动态、低亲和力、低特异性关联和扰动单一结构的方法,而生物物理学家和生物数学家需要与生物学家密切合作,建立和验证定量模型。包括一个术语表,以促进多学科的努力,揭示中尺度细胞生物学的丰富性和多样性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Life at the mesoscale: the self-organised cytoplasm and nucleoplasm.

Life at the mesoscale: the self-organised cytoplasm and nucleoplasm.

Life at the mesoscale: the self-organised cytoplasm and nucleoplasm.

The cell contains highly dynamic structures exploiting physical principles of self-organisation at the mesoscale (100 nm to 10 μm). Examples include non-membrane bound cytoplasmic bodies, cytoskeleton-based motor networks and multi-scale chromatin organisation. The challenges of mesoscale self-organisation were discussed at a CECAM workshop in July 2014. Biologists need approaches to observe highly dynamic, low affinity, low specificity associations and to perturb single structures, while biological physicists and biomathematicians need to work closely with biologists to build and validate quantitative models. A table of terminology is included to facilitate multidisciplinary efforts to reveal the richness and diversity of mesoscale cell biology.

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BMC Biophysics
BMC Biophysics BIOPHYSICS-
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>12 weeks
期刊介绍: Cessation
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