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Low rate of replication fork progression lengthens the replication timing of a locus containing an early firing origin

机译:复制叉进展缓慢的速率延长了包含较早发射起点的基因座的复制时间

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Invariance of temporal order of genome replication in eukaryotic cells and its correlation with gene activity has been well-documented. However, recent data suggest a relax control of replication timing. To evaluate replication schedule accuracy, we detailed the replicational organization of the developmentally regulated php locus that we previously found to be lately replicated, even though php gene is highly transcribed in naturally synchronous plasmodia of Physarum. Unexpectedly, bi-dimensional agarose gel electrophoreses of DNA samples prepared at specific time points of S phase showed that replication of the locus actually begins at the onset of S phase but it proceeds through the first half of S phase, so that complete replication of php-containing DNA fragments occurs in late S phase. Origin mapping located replication initiation upstream php coding region. This proximity and rapid fork progression through the coding region result in an early replication of php gene. We demonstrated that afterwards an unusually low fork rate and unidirectional fork pausing prolong complete replication of php locus, and we excluded random replication timing. Importantly, we evidenced that the origin linked to php gene in plasmodium is not fired in amoebae when php expression dramatically reduced, further illustrating replication-transcription coupling in Physarum.
机译:真核细胞中基因组复制的时间顺序的不变性及其与基因活性的相关性已得到充分证明。但是,最近的数据表明可以轻松控制复制时间。为了评估复制计划的准确性,我们详细描述了以前先前发现已被复制的受发育调节的php基因座的复制组织,即使php基因在浆虫的自然同步疟原虫中高度转录。出乎意料的是,在S期的特定时间制备的DNA样品的二维琼脂糖凝胶电泳显示,基因座的复制实际上始于S期的开始,但一直持续到S期的前半部分,从而使php完全复制含DNA的片段发生在S期后期。原始映射位于复制启动上游php编码区域。通过编码区的这种接近和快速的叉子进展导致php基因的早期复制。我们证明了之后异常低的分叉速率和单向分叉暂停会延长php基因座的完全复制,并且排除了随机复制的时间。重要的是,我们证明了当php表达急剧降低时,在疟原虫中并未触发与疟原虫中php基因相关的起源,这进一步说明了Physarum中的复制-转录偶联。

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