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如何训练细胞——前沿分子工具

How to Train a Cell-Cutting-Edge Molecular Tools.

作者信息

Czapiński Jakub, Kiełbus Michał, Kałafut Joanna, Kos Michał, Stepulak Andrzej, Rivero-Müller Adolfo

机构信息

Department of Biochemistry and Molecular Biology, Medical University of LublinLublin, Poland; Postgraduate School of Molecular Medicine, Medical University of WarsawWarsaw, Poland.

Department of Biochemistry and Molecular Biology, Medical University of Lublin Lublin, Poland.

出版信息

Front Chem. 2017 Mar 10;5:12. doi: 10.3389/fchem.2017.00012. eCollection 2017.

Abstract

In biological systems, the formation of molecular complexes is the currency for all cellular processes. Traditionally, functional experimentation was targeted to single molecular players in order to understand its effects in a cell or animal phenotype. In the last few years, we have been experiencing rapid progress in the development of ground-breaking molecular biology tools that affect the metabolic, structural, morphological, and (epi)genetic instructions of cells by chemical, optical (optogenetic) and mechanical inputs. Such precise dissection of cellular processes is not only essential for a better understanding of biological systems, but will also allow us to better diagnose and fix common dysfunctions. Here, we present several of these emerging and innovative techniques by providing the reader with elegant examples on how these tools have been implemented in cells, and, in some cases, organisms, to unravel molecular processes in minute detail. We also discuss their advantages and disadvantages with particular focus on their translation to multicellular organisms for spatiotemporal regulation. We envision that further developments of these tools will not only help solve the processes of life, but will give rise to novel clinical and industrial applications.

摘要

在生物系统中,分子复合物的形成是所有细胞过程的关键所在。传统上,功能实验针对单个分子作用物,以了解其对细胞或动物表型的影响。在过去几年中,我们在开创性分子生物学工具的开发方面取得了快速进展,这些工具通过化学、光学(光遗传学)和机械输入来影响细胞的代谢、结构、形态和(表观)遗传指令。对细胞过程进行如此精确的剖析不仅对于更好地理解生物系统至关重要,还将使我们能够更好地诊断和修复常见的功能障碍。在这里,我们通过向读者提供这些工具如何在细胞以及某些情况下在生物体中得以应用的精彩示例,来介绍其中的一些新兴和创新技术,以便详细揭示分子过程。我们还将讨论它们的优缺点,特别关注其向多细胞生物体转化以进行时空调控的情况。我们设想,这些工具的进一步发展不仅将有助于解决生命过程,还将催生新的临床和工业应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbdb/5344921/c880e2ec964f/fchem-05-00012-g0001.jpg

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