Neylon Cameron, Kralicek Andrew V, Hill Thomas M, Dixon Nicholas E
School of Chemistry, University of Southampton, Southampton SO17 1BJ, United Kingdom.
Microbiol Mol Biol Rev. 2005 Sep;69(3):501-26. doi: 10.1128/MMBR.69.3.501-526.2005.
The arrest of DNA replication in Escherichia coli is triggered by the encounter of a replisome with a Tus protein-Ter DNA complex. A replication fork can pass through a Tus-Ter complex when traveling in one direction but not the other, and the chromosomal Ter sites are oriented so replication forks can enter, but not exit, the terminus region. The Tus-Ter complex acts by blocking the action of the replicative DnaB helicase, but details of the mechanism are uncertain. One proposed mechanism involves a specific interaction between Tus-Ter and the helicase that prevents further DNA unwinding, while another is that the Tus-Ter complex itself is sufficient to block the helicase in a polar manner, without the need for specific protein-protein interactions. This review integrates three decades of experimental information on the action of the Tus-Ter complex with information available from the Tus-TerA crystal structure. We conclude that while it is possible to explain polar fork arrest by a mechanism involving only the Tus-Ter interaction, there are also strong indications of a role for specific Tus-DnaB interactions. The evidence suggests, therefore, that the termination system is more subtle and complex than may have been assumed. We describe some further experiments and insights that may assist in unraveling the details of this fascinating process.
在大肠杆菌中,DNA复制的停滞是由复制体与Tus蛋白 - Ter DNA复合物相遇引发的。复制叉在一个方向移动时可以穿过Tus - Ter复合物,但在另一个方向则不能,并且染色体Ter位点的方向使得复制叉能够进入但不能离开末端区域。Tus - Ter复合物通过阻断复制性DnaB解旋酶的作用来发挥功能,但其作用机制的细节尚不确定。一种提出的机制涉及Tus - Ter与解旋酶之间的特定相互作用,这种相互作用阻止了进一步的DNA解旋,而另一种机制是Tus - Ter复合物本身足以以极性方式阻断解旋酶,而无需特定的蛋白质 - 蛋白质相互作用。这篇综述将三十年来关于Tus - Ter复合物作用的实验信息与从Tus - TerA晶体结构中获得的信息进行了整合。我们得出结论,虽然有可能通过仅涉及Tus - Ter相互作用的机制来解释极性叉停滞,但也有强烈迹象表明特定的Tus - DnaB相互作用发挥了作用。因此,证据表明终止系统比之前设想的更加微妙和复杂。我们描述了一些进一步的实验和见解,这些可能有助于揭示这个迷人过程的细节。