Kanter Diane M, Bruck Irina, Kaplan Daniel L
Department of Biological Sciences, Vanderbilt University, Nashville, Tennessee 37235, USA.
J Biol Chem. 2008 Nov 7;283(45):31172-82. doi: 10.1074/jbc.M804686200. Epub 2008 Sep 17.
The replication fork helicase in eukaryotes is a large complex that is composed of Mcm2-7, Cdc45, and GINS. The Mcm2-7 proteins form a heterohexameric ring that hydrolyzes ATP and provide the motor function for this unwinding complex. A comprehensive study of how individual Mcm subunit biochemical activities relate to unwinding function has not been accomplished. We studied the mechanism of the Mcm4-Mcm6-Mcm7 complex, a useful model system because this complex has helicase activity in vitro. We separately purified each of three Mcm subunits until they were each nuclease-free, and we then examined the biochemical properties of different combinations of Mcm subunits. We found that Mcm4 and Mcm7 form an active unwinding assembly. The addition of Mcm6 to Mcm4/Mcm7 results in the formation of an active Mcm4/Mcm6/Mcm7 helicase assembly. The Mcm4-Mcm7 complex forms a ringed-shaped hexamer that unwinds DNA with 3' to 5' polarity by a steric exclusion mechanism, similar to Mcm4/Mcm6/Mcm7. The Mcm4-Mcm7 complex has a high level of ATPase activity that is further stimulated by DNA. The ability of different Mcm mixtures to form rings or exhibit DNA stimulation of ATPase activity correlates with the ability of these complexes to unwind DNA. The Mcm4/Mcm7 and Mcm4/Mcm6/Mcm7 assemblies can open to load onto circular DNA to initiate unwinding. We conclude that the Mcm subunits are surprisingly flexible and dynamic in their ability to interact with one another to form active unwinding complexes.
真核生物中的复制叉解旋酶是一种大型复合物,由Mcm2 - 7、Cdc45和GINS组成。Mcm2 - 7蛋白形成一个异源六聚体环,可水解ATP,并为这种解旋复合物提供动力功能。尚未完成对单个Mcm亚基生化活性与解旋功能之间关系的全面研究。我们研究了Mcm4 - Mcm6 - Mcm7复合物的机制,这是一个有用的模型系统,因为该复合物在体外具有解旋酶活性。我们分别纯化了三个Mcm亚基中的每一个,直到它们各自无核酸酶,然后检查了Mcm亚基不同组合的生化特性。我们发现Mcm4和Mcm7形成一个有活性的解旋组件。将Mcm6添加到Mcm4/Mcm7中会导致形成有活性的Mcm4/Mcm6/Mcm7解旋酶组件。Mcm4 - Mcm7复合物形成一个环状六聚体,通过空间排斥机制以3'到5'的极性解旋DNA,类似于Mcm4/Mcm6/Mcm7。Mcm4 - Mcm7复合物具有高水平的ATP酶活性,DNA可进一步刺激该活性。不同Mcm混合物形成环或表现出DNA对ATP酶活性刺激的能力与这些复合物解旋DNA的能力相关。Mcm4/Mcm7和Mcm4/Mcm6/Mcm7组件可以打开以加载到环状DNA上以启动解旋。我们得出结论,Mcm亚基在相互作用形成有活性的解旋复合物的能力方面具有惊人的灵活性和动态性。