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首页> 外文期刊>Plasmid: An International Journal Devoted to Extrachromosomal Gene Systems >Replication of a unit-copy plasmid F in the bacterial cell cycle: a replication rate function analysis.
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Replication of a unit-copy plasmid F in the bacterial cell cycle: a replication rate function analysis.

机译:细菌细胞周期中单位拷贝质粒F的复制:复制速率功能分析。

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摘要

For stability, the replication of unit-copy plasmids ought to occur by a highly controlled process. We have characterized the replication dynamics of a unit-copy plasmid F by a replication rate function defined as the probability per unit age interval of the cell cycle that a plasmid will initiate replication. Analysis of baby-machine data [J. Bacteriol. 170 (1988) 1380; J. Bacteriol. 179 (1997) 1393] by stochastics that make no detailed reference to underlying mechanism revealed that this rate function increased monotonically over the cell cycle with rapid increase near cell division. This feature is highly suggestive of a replication control mechanism that is designed to force most plasmids to replicate before cells undergo division. The replication rate function is developed anew from a mechanistic model incorporating the hypotheses that initiators are limiting and that steric hindrance of origins by handcuffing control initiation of replication. The model is based on correctly folded initiator protein monomers arising from an inactive dimer pool via chaperones in limiting amounts, their random distribution to high affinity sites (iterons) at the origin (ori) and an outside locus (incC), the statistical mechanics of bound monomer participation in pairing the two loci (cis-handcuffing), and initiation probability as proportional to the number of non-handcuffed ori-saturated plasmids. Provided cis-handcuffing is present, this model closely accounts for the shape of the replication rate function derived from experiment, and reproduces the observation that replication occurs throughout the cell cycle. Present concepts of iteron-based molecular mechanisms thus appear capable of yielding a quantitative description of unit-copy-number plasmid replication dynamics.
机译:为了稳定,单位复制质粒的复制应通过高度受控的过程进行。我们已经通过复制率函数表征了单位复制质粒F的复制动力学,复制率函数定义为质粒将启动复制的细胞周期的每单位年龄间隔的概率。婴儿机数据分析[J.细菌。 170(1988)1380; J.细菌。 179(1997)1393]的随机性未详细提及基础机制,发现该速率函数在细胞周期内单调增加,而近细胞分裂迅速增加。此功能高度暗示了一种复制控制机制,该机制旨在迫使大多数质粒在细胞分裂之前复制。复制速率函数是从一个机械模型重新开发的,该模型结合了以下假设:引发剂是限制性的,并且通过戴上手铐控制复制的起始会限制起始位的位阻。该模型基于正确折叠的起始蛋白蛋白质单体,这些起始蛋白质通过有限量的伴侣分子从无活性的二聚体池中产生,它们随机分布到起源(ori)和外部位点(incC)的高亲和力位点(铁),以及结合单体参与两个基因座的配对(顺手铐),起始概率与未手铐的ori-饱和质粒的数量成正比。如果存在顺式手铐,则该模型会密切考虑源自实验的复制速率函数的形状,并再现观察到复制在整个细胞周期中都会发生。因此,基于Iteron的分子机制的当前概念似乎能够定量描述单位拷贝数质粒的复制动力学。

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