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利用超分辨率成像技术在活细胞中观察古菌 DNA 的复制和修复。

Snapshots of archaeal DNA replication and repair in living cells using super-resolution imaging.

机构信息

Laboratoire d'Optique et Biosciences, Ecole Polytechnique, CNRS UMR7645 - INSERM U1182, 91128 Palaiseau Cedex, France.

出版信息

Nucleic Acids Res. 2018 Nov 16;46(20):10757-10770. doi: 10.1093/nar/gky829.

Abstract

Using the haloarchaeon Haloferax volcanii as a model, we developed nascent DNA labeling and the functional GFP-labeled single-stranded binding protein RPA2 as novel tools to gain new insight into DNA replication and repair in live haloarchaeal cells. Our quantitative fluorescence microscopy data revealed that RPA2 forms distinct replication structures that dynamically responded to replication stress and DNA damaging agents. The number of the RPA2 foci per cell followed a probabilistic Poisson distribution, implying hitherto unnoticed stochastic cell-to-cell variation in haloarchaeal DNA replication and repair processes. The size range of haloarchaeal replication structures is very similar to those observed earlier in eukaryotic cells. The improved lateral resolution of 3D-SIM fluorescence microscopy allowed proposing that inhibition of DNA synthesis results in localized replication foci clustering and facilitated observation of RPA2 complexes brought about by chemical agents creating DNA double-strand breaks. Altogether our in vivo observations are compatible with earlier in vitro studies on archaeal single-stranded DNA binding proteins. Our work thus underlines the great potential of live cell imaging for unraveling the dynamic nature of transient molecular interactions that underpin fundamental molecular processes in the Third domain of life.

摘要

我们以嗜盐古菌 Haloferax volcanii 为模型,开发了新生 DNA 标记和功能 GFP 标记的单链结合蛋白 RPA2,这是一种新工具,可以深入了解活嗜盐古菌细胞中的 DNA 复制和修复。我们的定量荧光显微镜数据显示,RPA2 形成了独特的复制结构,这些结构可以对复制应激和 DNA 损伤剂做出动态响应。每个细胞的 RPA2 焦点数量遵循概率泊松分布,这表明在嗜盐古菌 DNA 复制和修复过程中,细胞间存在迄今为止未被注意到的随机变化。嗜盐古菌复制结构的大小范围与先前在真核细胞中观察到的非常相似。3D-SIM 荧光显微镜的改进横向分辨率使得我们能够提出这样的假设,即 DNA 合成的抑制会导致局部复制焦点聚类,并有助于观察由化学试剂产生的 DNA 双链断裂所导致的 RPA2 复合物。总的来说,我们的体内观察结果与以前关于古菌单链 DNA 结合蛋白的体外研究结果一致。因此,我们的工作强调了活细胞成像在揭示构成生命第三域基本分子过程的瞬时分子相互作用的动态性质方面的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d38/6237752/0a594707c428/gky829fig1.jpg

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