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Internal Structure and Dynamics of Isolated Escherichia coli Nucleoids Assessed by Fluorescence Correlation Spectroscopy

机译:荧光相关光谱法评估分离的大肠杆菌核的内部结构和动力学

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摘要

The morphology and dynamics of DNA in a bacterial nucleoid affects the kinetics of such major processes as DNA replication, gene expression. and chromosome segregation. In this work, we have applied fluorescence correlation spectroscopy to assess the structure and internal dynamics of isolated Escherichia coli nucleoids. We show that structural information can be extracted from the amplitude of fluorescence correlation spectroscopy correlation functions of randomly labeled nucleoids. Based on the developed formalism we estimate the characteristic size of nucleoid structural units for native, relaxed, and positively supercoiled nucleoids. The degree of supercoiling was varied using the intercalating agent chloroquine and evaluated from fluorescence microscopy images. The relaxation of superhelicity was accompanied by 15-fold decrease in the length of nucleoid units (from ∼50 kbp to ∼3 kbp).
机译:细菌核苷中DNA的形态和动力学影响DNA复制,基因表达等主要过程的动力学。和染色体分离。在这项工作中,我们已经应用了荧光相关光谱技术来评估分离的大肠杆菌核苷的结构和内部动力学。我们表明,可以从随机标记的类核苷酸的荧光相关光谱相关函数的振幅中提取结构信息。基于发达的形式主义,我们估计天然,松弛和正超螺旋核苷的核苷结构单元的特征大小。使用嵌入剂氯喹可以改变超卷曲的程度,并根据荧光显微镜图像进行评估。超螺旋的松弛伴随着类核单位长度的减少15倍(从〜50 kbp减少到〜3 kbp)。

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