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The structure of replicating kinetoplast DNA networks

机译:复制运动塑料DNA网络的结构

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摘要

Kinetoplast DNA (kDNA), the mitochondrial DNA of Crithidia fasciculata and related trypanosomatids, is a network containing approximately 5,000 covalently closed minicircles which are topologically interlocked. kDNA synthesis involves release of covalently closed minicircles from the network, and, after replication of the free minicircles, reattachment of the nicked or gapped progeny minicircles to the network periphery. We have investigated this process by electron microscopy of networks at different stages of replication. The distribution of nicked and closed minicircles is easily detectable either by autoradiography of networks radiolabeled at endogenous nicks by nick translation or by twisting the covalently closed minicircles with intercalating dye. The location of newly synthesized minicircles within the network is determined by autoradiography of network is determined by autoradiography of networks labeled in vivo with a pulse of [3H]thymidine. These studies have clarified structural changes in the network during replication, the timing of repair of nicked minicircles after replication, and the mechanism of division of the network.
机译:运动塑料DNA(kDNA),即Crisidia fasciculata和相关锥虫的线粒体DNA,是一个包含约5,000个共价闭合的小圆环的网络,这些小圆环在拓扑上是互锁的。 kDNA合成涉及从网络释放共价闭合的小圆,并在复制自由小圆后,将带缺口或有缺口的子代小圆重新连接到网络外围。我们已经通过复制的不同阶段的网络的电子显微镜研究了这一过程。缺刻的和闭合的微圆的分布很容易检测到,方法是通过放射平移在内源性切口处放射标记的网络进行放射自显影,方法是通过缺口平移或将共价闭合的微圆与嵌入的染料扭曲。通过网络的放射自显影确定网络中新合成的微圆的位置,该放射自显影通过在体内用[3H]胸苷脉冲标记的网络的放射自显影确定。这些研究阐明了复制过程中网络的结构变化,复制后修复有切口的小圆圈的时间以及网络的划分机制。

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