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Bayesian inference of origin firing time distributions origin interference and licencing probabilities from Next Generation Sequencing data

机译:来自下一代测序数据的原点发射时间分布原点干扰和许可概率的贝叶斯推断

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摘要

DNA replication is a stochastic process with replication forks emanating from multiple replication origins. The origins must be licenced in G1, and the replisome activated at licenced origins in order to generate bi-directional replication forks in S-phase. Differential firing times lead to origin interference, where a replication fork from an origin can replicate through and inactivate neighbouring origins (origin obscuring). We developed a Bayesian algorithm to characterize origin firing statistics from Okazaki fragment (OF) sequencing data. Our algorithm infers the distributions of firing times and the licencing probabilities for three consecutive origins. We demonstrate that our algorithm can distinguish partial origin licencing and origin obscuring in OF sequencing data from Saccharomyces cerevisiae and human cell types. We used our method to analyse the decreased origin efficiency under loss of Rat1 activity in S. cerevisiae, demonstrating that both reduced licencing and increased obscuring contribute. Moreover, we show that robust analysis is possible using only local data (across three neighbouring origins), and analysis of the whole chromosome is not required. Our algorithm utilizes an approximate likelihood and a reversible jump sampling technique, a methodology that can be extended to analysis of other mechanistic processes measurable through Next Generation Sequencing data.
机译:DNA复制是一个随机过程,复制叉起源于多个复制起点。原始必须在G1中获得许可,并在许可的原始位置激活复制体,以便在S期生成双向复制叉。不同的发射时间会导致原点干扰,其中原点的复制叉可以复制并钝化相邻的原点(原点模糊)。我们开发了一种贝叶斯算法来表征来自Okazaki片段(OF)测序数据的起源激发统计数据。我们的算法可以推断三个连续来源的触发时间分布和许可概率。我们证明了我们的算法可以区分部分来源许可和来自酿酒酵母和人类细胞类型的OF测序数据中的来源遮盖。我们使用我们的方法分析了啤酒酵母中Rat1活性降低导致的起源效率降低,证明减少许可和增加遮盖作用均起作用。此外,我们表明仅使用本地数据(跨越三个相邻起点)就可以进行可靠的分析,而无需对整个染色体进行分析。我们的算法利用了近似似然和可逆的跳跃采样技术,该方法可以扩展到分析可通过下一代测序数据测量的其他机械过程。

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