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单分子成像揭示丙型肝炎病毒NS3解旋酶的易位和DNA环化动力学。

Single-molecule imaging reveals the translocation and DNA looping dynamics of hepatitis C virus NS3 helicase.

作者信息

Lin Chang-Ting, Tritschler Felix, Lee Kyung Suk, Gu Meigang, Rice Charles M, Ha Taekjip

机构信息

Department of Biophysics and Biophysical Chemistry, Johns Hopkins University, Baltimore, Maryland.

Department of Physics Education, Kongju National University, Kongju, 32588, Republic of Korea.

出版信息

Protein Sci. 2017 Jul;26(7):1391-1403. doi: 10.1002/pro.3136. Epub 2017 Mar 6.

Abstract

Non-structural protein 3 (NS3) is an essential enzyme and a therapeutic target of hepatitis C virus (HCV). Compared to NS3-catalyzed nucleic acids unwinding, its translation on single stranded nucleic acids have received relatively little attention. To investigate the NS3h translocation with single-stranded nucleic acids substrates directly, we have applied a hybrid platform of single-molecule fluorescence detection combined with optical trapping. With the aid of mechanical manipulation and fluorescence localization, we probed the translocase activity of NS3h on laterally stretched, kilobase-size single-stranded DNA and RNA. We observed that the translocation rate of NS3h on ssDNA at a rate of 24.4 nucleotides per second, and NS3h translocates about three time faster on ssRNA, 74 nucleotides per second. The translocation speed was minimally affected by the applied force. A subpopulation of NS3h underwent a novel translocation mode on ssDNA where the stretched DNA shortened gradually and then recovers its original length abruptly before repeating the cycle repetitively. The speed of this mode of translocation was reduced with increasing force. With corroborating data from single-molecule fluorescence resonance energy transfer (smFRET) experiments, we proposed that NS3h can cause repetitive looping of DNA. The smFRET dwell time analysis showed similar translocation time between sole translocation mode versus repetitive looping mode, suggesting that the motor domain exhibits indistinguishable enzymatic activities between the two translocation modes. We propose a potential secondary nucleic acids binding site at NS3h which might function as an anchor point for translocation-coupled looping.

摘要

非结构蛋白3(NS3)是一种必需酶,也是丙型肝炎病毒(HCV)的治疗靶点。与NS3催化的核酸解旋相比,其在单链核酸上的转位受到的关注相对较少。为了直接研究NS3h与单链核酸底物的转位,我们应用了单分子荧光检测与光镊相结合的混合平台。借助机械操作和荧光定位,我们探测了NS3h在横向拉伸的、千碱基大小的单链DNA和RNA上的转位酶活性。我们观察到NS3h在ssDNA上的转位速率为每秒24.4个核苷酸,而NS3h在ssRNA上的转位速度快约三倍,为每秒74个核苷酸。转位速度受施加力的影响最小。NS3h的一个亚群在ssDNA上经历了一种新的转位模式,即拉伸的DNA逐渐缩短,然后突然恢复其原始长度,之后重复该循环。这种转位模式的速度随着力的增加而降低。结合单分子荧光共振能量转移(smFRET)实验的确证数据,我们提出NS3h可导致DNA的重复环化。smFRET停留时间分析表明,单一转位模式与重复环化模式之间的转位时间相似,这表明运动结构域在两种转位模式之间表现出难以区分的酶活性。我们提出NS3h上可能存在一个潜在的二级核酸结合位点,它可能作为转位偶联环化的锚定点。

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