Bowers Lisa M, Filutowicz Marcin
Department of Bacteriology, University of Wisconsin-Madison, 1550 Linden Drive, Madison, WI 53706, USA.
J Mol Biol. 2008 Mar 28;377(3):609-15. doi: 10.1016/j.jmb.2008.01.039. Epub 2008 Jan 26.
The replication initiator protein, pi, plays an essential role in the initiation of plasmid R6K replication. Both monomers and dimers of pi bind to iterons in the gamma origin of plasmid R6K, yet monomers facilitate open complex formation, while dimers, the predominant form in the cell, do not. Consequently, pi monomers activate replication, while pi dimers inhibit replication. Recently, it was shown that the monomeric form of pi binds multiple tandem iterons in a strongly cooperative fashion, which might explain how monomers outcompete dimers for replication initiation when plasmid copy number and pi supply are low. Here, we examine cooperative binding of pi dimers and explore the role that these interactions may have in the inactivation of gamma origin. To examine pi dimer/iteron interactions in the absence of competing pi monomer/iteron interactions using wild-type pi, constructs were made with key base changes to each iteron that eliminate pi monomer binding yet have no impact on pi dimer binding. Our results indicate that, in the absence of pi monomers, pi dimers bind with greater cooperativity to alternate iterons than to adjacent iterons, thus preferentially leaving intervening iterons unbound and the origin unsaturated. We discuss new insights into plasmid replication control by pi dimers.
复制起始蛋白π在质粒R6K复制起始过程中起着至关重要的作用。π的单体和二聚体均能与质粒R6Kγ-ori的迭代子结合,但单体有助于开放复合物的形成,而细胞中主要存在的二聚体则不然。因此,π单体激活复制,而π二聚体抑制复制。最近的研究表明,π的单体形式以强烈协同的方式结合多个串联迭代子,这或许可以解释在质粒拷贝数和π供应量较低时,单体如何在复制起始过程中胜过二聚体。在此,我们研究了π二聚体的协同结合,并探讨了这些相互作用在γ-ori失活中可能发挥的作用。为了在不存在竞争性π单体/迭代子相互作用的情况下,使用野生型π来研究π二聚体/迭代子相互作用,构建了对每个迭代子进行关键碱基改变的构建体,这些改变消除了π单体的结合,但对π二聚体的结合没有影响。我们的结果表明,在不存在π单体的情况下,π二聚体与交替迭代子的结合协同性高于与相邻迭代子的结合,从而优先使中间的迭代子未被结合,使ori不饱和。我们讨论了关于π二聚体对质粒复制控制的新见解。