Department of Physics, University of California, Berkeley, CA 94720, USA.
J Mol Biol. 2010 Dec 3;404(3):439-55. doi: 10.1016/j.jmb.2010.09.047. Epub 2010 Sep 29.
We present a semiquantitative model for translocation and unwinding activities of monomeric nonstructural protein 3 (NS3) helicase. The model is based on structural, biochemical, and single-molecule measurements. The model predicts that the NS3 helicase actively unwinds duplex by reducing more than 50% the free energy that stabilizes base pairing/stacking. The unwinding activity slows the movement of the helicase in a sequence-dependent manner, lowering the average unwinding efficiency to less than 1 bp per ATP cycle. When bound with ATP, the NS3 helicase can display significant translocational diffusion. This increases displacement fluctuations of the helicase, decreases the average unwinding efficiency, and enhances the sequence dependence. Also, interactions between the helicase and the duplex stabilize the helicase at the junction, facilitating the helicase's unwinding activity while preventing it from dissociating. In the presence of translocational diffusion during active unwinding, the dissociation rate of the helicase also exhibits sequence dependence. Based on unwinding velocity fluctuations measured from single-molecule experiments, we estimate the diffusion rate to be on the order of 10 s(-1). The generic features of coupling single-stranded nucleic acid translocation with duplex unwinding presented in this work may apply generally to a class of helicases.
我们提出了一个单体非结构蛋白 3 (NS3) 解旋酶的转位和解旋活性的半定量模型。该模型基于结构、生化和单分子测量。该模型预测,NS3 解旋酶通过降低稳定碱基配对/堆积的自由能超过 50%,从而积极地解旋双链。解旋活性以序列依赖性方式减缓解旋酶的运动,将平均解旋效率降低至每 ATP 循环不到 1 个碱基。当与 ATP 结合时,NS3 解旋酶可以显示出显著的转位扩散。这增加了解旋酶的位移波动,降低了平均解旋效率,并增强了序列依赖性。此外,解旋酶与双链体之间的相互作用将解旋酶稳定在连接处,促进解旋酶的解旋活性,同时防止其解离。在活性解旋过程中存在转位扩散时,解旋酶的解离速率也表现出序列依赖性。根据单分子实验测量的解旋速度波动,我们估计扩散速率约为 10 s(-1)。本工作中提出的将单链核酸转位与双链体解旋偶联的一般特征可能普遍适用于一类解旋酶。