Structure of bacterial chromosome: An analysis of DNA-protein interactions in vivo.

Joanna Hołówka, Małgorzata Płachetka
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引用次数: 2

Abstract

According to recent reports, bacterial chromosomes exhibit a hierarchical organization. The number of proteins that bind DNA are responsible for local and global organization of the DNA ensuring proper chromosome compaction. Advanced molecular biology techniques combined with high-throughput DNA sequencing methods allow a precise analysis of bacterial chromosome structures on a local and global scale. Methods such as in vivo footprinting and ChIP-seq allow to map binding sites of analyzed proteins in certain chromosomal regions or along the whole chromosome while analysis of the spatial interactions on global scale could be performed by 3C techniques. Additional insight into complex structures created by chromosome-organizing proteins is provided by high-resolution fluorescence microscopy techniques.

细菌染色体结构:体内dna -蛋白质相互作用的分析。
根据最近的报道,细菌染色体表现出等级组织。结合DNA的蛋白质数量负责DNA的局部和全局组织,确保适当的染色体压实。先进的分子生物学技术与高通量DNA测序方法相结合,可以在局部和全球范围内精确分析细菌染色体结构。诸如体内足迹和ChIP-seq等方法允许在某些染色体区域或沿整个染色体绘制所分析蛋白质的结合位点,而在全球范围内进行空间相互作用的分析可以通过3C技术进行。高分辨率荧光显微镜技术提供了对染色体组织蛋白产生的复杂结构的额外见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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