低温电子显微镜作为系统生物学、结构分析和活细胞实验操作的功能仪器。对当前工作的全面回顾

O. Gradov, M. Gradova
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引用次数: 4

摘要

本文的目的是介绍低温电子显微镜作为大多数系统生物学分支的复杂数据源,包括最具前景的非局部方法,即“局部组学”和“动力学组学”。本文简要综述了各种低温电子显微方法和相应的系统生物学方法。上述分类可以被认为是一个有用的框架,对低温电子显微镜的目的和仪器工具的初步理解。我们不详细讨论这些概念中的任何一个,而只是指出,它们的方法复杂性只遵循以这种方式研究的生物系统的结构-功能复杂性。我们还提出,低温电子显微镜技术不仅可以用于观察,而且可以用于一些生物和类似软物质物体和微观样品的修饰和结构再功能化。在其他领域,我们从低温电子显微镜作为系统生物学的工具开始,发展到它作为系统生物学和功能仿生学的工具;即。“系统低温生物学”变成了“合成低温生物学”或“低温仿生学”。所有这些结论都可以从最近几年的最新作品中推断出来,包括刚刚提交的国外论文。这篇文章提供了一个最新的概念基础的描述,在计算低温电子显微镜(硅)方法和数据挖掘原则的新观点,这是现代结构分析和重建的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cryoelectron Microscopy as a Functional Instrument for Systems Biology, Structural Analysis & Experimental Manipulations with Living Cells. A comprehensive review of the current works
The aim of this paper is to give an introductory review of the cryoelectron microscopy as a complex data source for the most of the system biology branches, including the most perspective non-local approaches known as "localomics" and "dynamomics". A brief summary of various cryoelectron mi-croscopy methods and corresponding system biological ap-proaches is given in the text. The above classification can be considered as a useful framework for the primary comprehen-sions about cryoelectron microscopy aims and instrumental tools. We do not discuss any of these concepts in details, but merely point out that their methodological complexity follows only from the structure-functional complexity of biological systems which are investigated in this manner. We also postu-late that one can employ some of the cryoelectron microscopic techniques not only for observation, but also for modification and structural refunctionalization of some biological and similar soft matter objects and microscopic samples. In other worlds, we start with the cryoelectron microscopy as a tool for the sys-tem biology and progress to its applying as an instrument for system biology and functional biomimetics; i.e. "system cryobi-ology" goes over into "synthetic cryobiology" or "cryogenic biomimetics". All these conclusions can be deduced from the most recent works of the latest years, including just submitted foreign papers. This article provides an up-to-date description of the conceptual basis for the novel view on the computational cryoelectron microscopy (in silico) approaches and the data mining principles which lie at the very foundation of modern structural analysis and reconstruction.
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