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首页> 外文期刊>Journal of Cell Science >The replication mechanism of kinetoplast DNA networks in several trypanosomatid species.
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The replication mechanism of kinetoplast DNA networks in several trypanosomatid species.

机译:运动塑料DNA网络在几种锥虫物种中的复制机制。

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摘要

Kinetoplast DNA, a giant network of interlocked DNA circles, replicates by an unusual mechanism. Minicircles are released individually from the network by a topoisomerase II, and then, after replication, their progeny are reattached at antipodal positions on the network periphery. Studies to date have revealed two distinct variations on this model. In Crithidia fasciculata the newly replicated minicircles quickly become uniformly distributed around the network periphery, whereas in Trypanosoma brucei the minicircles accumulate near their two points of attachment. The kinetoplast DNA replication mechanism used by other related trypanosomatid species was until now unknown. Here we used a novel method, involving fluorescence microscopy of isolated networks, to investigate kinetoplast DNA replication in Leishmania tarentolae, Leishmania donovani, Trypanosoma cruzi and Phytomonas serpens. We found that all of these species have a replication mechanism resembling that of C. fasciculata and that the polar replication mechanism observed in T. brucei is so far unique to this species.
机译:动植物DNA,一个巨大的环环相扣的DNA圆网络,通过一种不寻常的机制复制。小圆环通过拓扑异构酶II从网络中单独释放出来,然后在复制后,其后代重新附着在网络外围的反足位置。迄今为止的研究表明,此模型有两个明显的变化。在Crisidia fasciculata中,新复制的小圆很快迅速均匀地分布在网络外围,而在布氏锥虫中,小圆聚集在它们的两个附着点附近。到目前为止,其他相关的锥虫病物种使用的运动塑料DNA复制机制尚不清楚。在这里,我们使用一种新颖的方法,包括隔离网络的荧光显微镜技术,来研究塔氏利什曼原虫,多形利什曼原虫,克鲁氏锥虫和假单胞菌的运动塑料DNA复制。我们发现,所有这些物种的复制机制都类似于C. fasciculata,而在布鲁氏梭菌中观察到的极性复制机制是迄今为止该物种所独有的。

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