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Super-resolution binding activated localization microscopy through reversible change of DNA conformation

机译:通过可逆的DNA构象变化超高分辨率结合激活的定位显微镜

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Methods of super-resolving light microscopy (SRM) have found an exponentially growing range of applications in cell biology, including nuclear structure analyses. Recent developments have proven that Single Molecule Localization Microscopy (SMLM), a type of SRM, is particularly useful for enhanced spatial analysis of the cell nucleus due to its highest resolving capability combined with very specific fluorescent labeling. In this commentary we offer a brief review of the latest methodological development in the field of SMLM of chromatin designated DNA Structure Fluctuation Assisted Binding Activated Localization Microscopy (abbreviated as fBALM) as well as its potential future applications in biology and medicine.
机译:超分辨光学显微镜(SRM)的方法已经发现,在细胞生物学(包括核结构分析)中的应用范围呈指数增长。最近的发展证明,单分子定位显微镜(SMLM)是一种SRM,由于其最高的分辨能力和非常特异的荧光标记,对于增强细胞核的空间分析特别有用。在这篇评论中,我们简要介绍了染色质命名为DNA结构波动辅助结合激活定位显微镜(简称为fBALM)的SMLM领域的最新方法学发展及其在生物学和医学领域的潜在未来应用。

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