Super-resolution microscopy reveals stochastic initiation of replication in Drosophila polytene chromosomes.

IF 2.4 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Tatyana D Kolesnikova, Galina V Pokholkova, Viktoria V Dovgan, Igor F Zhimulev, Veit Schubert
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引用次数: 0

Abstract

Studying the probability distribution of replication initiation along a chromosome is a huge challenge. Drosophila polytene chromosomes in combination with super-resolution microscopy provide a unique opportunity for analyzing the probabilistic nature of replication initiation at the ultrastructural level. Here, we developed a method for synchronizing S-phase induction among salivary gland cells. An analysis of the replication label distribution in the first minutes of S phase and in the following hours after the induction revealed the dynamics of replication initiation. Spatial super-resolution structured illumination microscopy allowed identifying multiple discrete replication signals and to investigate the behavior of replication signals in the first minutes of the S phase at the ultrastructural level. We identified replication initiation zones where initiation occurs stochastically. These zones differ significantly in the probability of replication initiation per time unit. There are zones in which initiation occurs on most strands of the polytene chromosome in a few minutes. In other zones, the initiation on all strands takes several hours. Compact bands are free of replication initiation events, and the replication runs from outer edges to the middle, where band shapes may alter.

超分辨率显微镜显示果蝇多染色体复制的随机起始。
研究复制起始沿染色体的概率分布是一个巨大的挑战。果蝇多链染色体结合超分辨率显微镜为在超微结构水平上分析复制起始的概率性质提供了一个独特的机会。在此,我们开发了一种在唾液腺细胞间同步诱导s期的方法。通过对S期前几分钟和诱导后数小时内复制标记分布的分析,揭示了复制起始的动力学过程。空间超分辨率结构照明显微镜可以识别多个离散的复制信号,并在超微结构水平上研究复制信号在S期最初几分钟的行为。我们确定了随机起始的复制起始区。这些区域在每个时间单位内启动复制的概率上差别很大。在多烯染色体的大多数链上有起始区,起始发生在几分钟内。在其他区域,所有链的起始需要几个小时。紧致带没有复制起始事件,复制从外缘到中间,在中间,带的形状可能会改变。
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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来源期刊
Chromosome Research
Chromosome Research 生物-生化与分子生物学
CiteScore
4.70
自引率
3.80%
发文量
31
审稿时长
1 months
期刊介绍: Chromosome Research publishes manuscripts from work based on all organisms and encourages submissions in the following areas including, but not limited, to: · Chromosomes and their linkage to diseases; · Chromosome organization within the nucleus; · Chromatin biology (transcription, non-coding RNA, etc); · Chromosome structure, function and mechanics; · Chromosome and DNA repair; · Epigenetic chromosomal functions (centromeres, telomeres, replication, imprinting, dosage compensation, sex determination, chromosome remodeling); · Architectural/epigenomic organization of the genome; · Functional annotation of the genome; · Functional and comparative genomics in plants and animals; · Karyology studies that help resolve difficult taxonomic problems or that provide clues to fundamental mechanisms of genome and karyotype evolution in plants and animals; · Mitosis and Meiosis; · Cancer cytogenomics.
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