Luo Dahai, Xu Ting, Watson Randall P, Scherer-Becker Daniella, Sampath Aruna, Jahnke Wolfgang, Yeong Sui Sum, Wang Chern Hoe, Lim Siew Pheng, Strongin Alex, Vasudevan Subhash G, Lescar Julien
Structural & Computational Biology Division, School of Biological Sciences, Nanyang Technological University, Singapore.
EMBO J. 2008 Dec 3;27(23):3209-19. doi: 10.1038/emboj.2008.232. Epub 2008 Nov 13.
Together with the NS5 polymerase, the NS3 helicase has a pivotal function in flavivirus RNA replication and constitutes an important drug target. We captured the dengue virus NS3 helicase at several stages along the catalytic pathway including bound to single-stranded (ss) RNA, to an ATP analogue, to a transition-state analogue and to ATP hydrolysis products. RNA recognition appears largely sequence independent in a way remarkably similar to eukaryotic DEAD box proteins Vasa and eIF4AIII. On ssRNA binding, the NS3 enzyme switches to a catalytic-competent state imparted by an inward movement of the P-loop, interdomain closure and a change in the divalent metal coordination shell, providing a structural basis for RNA-stimulated ATP hydrolysis. These structures demonstrate for the first time large quaternary changes in the flaviviridae helicase, identify the catalytic water molecule and point to a beta-hairpin that protrudes from subdomain 2, as a critical element for dsRNA unwinding. They also suggest how NS3 could exert an effect as an RNA-anchoring device and thus participate both in flavivirus RNA replication and assembly.
NS3解旋酶与NS5聚合酶一起,在黄病毒RNA复制中起关键作用,是一个重要的药物靶点。我们在催化途径的几个阶段捕获了登革热病毒NS3解旋酶,包括与单链(ss)RNA、ATP类似物、过渡态类似物以及ATP水解产物结合的状态。RNA识别在很大程度上似乎不依赖于序列,其方式与真核生物DEAD盒蛋白Vasa和eIF4AIII非常相似。在结合ssRNA时,NS3酶转变为一种具有催化活性的状态,这是由P环向内移动、结构域间闭合以及二价金属配位壳的变化所赋予的,为RNA刺激的ATP水解提供了结构基础。这些结构首次展示了黄病毒科解旋酶的大的四级结构变化,确定了催化水分子,并指出从亚结构域2突出的一个β发夹结构是双链RNA解旋的关键元件。它们还揭示了NS3作为一种RNA锚定装置发挥作用的方式,从而参与黄病毒RNA的复制和组装。