Single Molecule Imaging of Genome Duplication and Maintenance Laboratory, The Francis Crick Institute, London NW1 1AT, United Kingdom.
Essays Biochem. 2021 Apr 16;65(1):17-26. doi: 10.1042/EBC20200026.
Cell-free extracts from Xenopus laevis eggs are a model system for studying chromosome biology. Xenopus egg extracts can be synchronised in different cell cycle stages, making them useful for studying DNA replication, DNA repair and chromosome organisation. Combining single-molecule approaches with egg extracts is an exciting development being used to reveal molecular mechanisms that are difficult to study using conventional approaches. Fluorescence-based single-molecule imaging of surface-tethered DNAs has been used to visualise labelled protein movements on stretched DNA, the dynamics of DNA-protein complexes and extract-dependent structural rearrangement of stained DNA. Force-based single-molecule techniques are an alternative approach to measure mechanics of DNA and proteins. In this essay, the details of these single-molecule techniques, and the insights into chromosome biology they provide, will be discussed.
爪蟾卵的无细胞提取物是研究染色体生物学的模型系统。可以将爪蟾卵提取物同步到不同的细胞周期阶段,这使得它们可用于研究 DNA 复制、DNA 修复和染色体组织。将单分子方法与卵提取物相结合是一个令人兴奋的发展,用于揭示使用传统方法难以研究的分子机制。基于荧光的表面连接 DNA 的单分子成像已被用于可视化标记的蛋白质在拉伸 DNA 上的运动、DNA-蛋白质复合物的动力学以及染色 DNA 的提取物依赖性结构重排。基于力的单分子技术是测量 DNA 和蛋白质力学的另一种方法。在本文中,将讨论这些单分子技术的细节以及它们提供的染色体生物学见解。