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噬菌体 T4 的基因组包装马达的功能不依赖于 DNA 序列。

Function of a viral genome packaging motor from bacteriophage T4 is insensitive to DNA sequence.

机构信息

Department of Physics, University of California, San Diego, La Jolla, CA 92093, USA.

Department of Biology, The Catholic University of America, District of Columbia, 20064, USA.

出版信息

Nucleic Acids Res. 2020 Nov 18;48(20):11602-11614. doi: 10.1093/nar/gkaa875.

Abstract

Many viruses employ ATP-powered motors during assembly to translocate DNA into procapsid shells. Previous reports raise the question if motor function is modulated by substrate DNA sequence: (i) the phage T4 motor exhibits large translocation rate fluctuations and pauses and slips; (ii) evidence suggests that the phage phi29 motor contacts DNA bases during translocation; and (iii) one theoretical model, the 'B-A scrunchworm', predicts that 'A-philic' sequences that transition more easily to A-form would alter motor function. Here, we use single-molecule optical tweezers measurements to compare translocation of phage, plasmid, and synthetic A-philic, GC rich sequences by the T4 motor. We observed no significant differences in motor velocities, even with A-philic sequences predicted to show higher translocation rate at high applied force. We also observed no significant changes in motor pausing and only modest changes in slipping. To more generally test for sequence dependence, we conducted correlation analyses across pairs of packaging events. No significant correlations in packaging rate, pausing or slipping versus sequence position were detected across repeated measurements with several different DNA sequences. These studies suggest that viral genome packaging is insensitive to DNA sequence and fluctuations in packaging motor velocity, pausing and slipping are primarily stochastic temporal events.

摘要

许多病毒在组装过程中利用 ATP 动力马达将 DNA 转运到原衣壳中。之前的报告提出了一个问题,即马达功能是否被底物 DNA 序列调节:(i) 噬菌体 T4 马达表现出大的转运速率波动和暂停及滑动;(ii) 有证据表明噬菌体 phi29 马达在转运过程中与 DNA 碱基接触;以及 (iii) 一个理论模型,“B-A 扭结虫”,预测更容易转变为 A 构象的“A 亲合”序列将改变马达功能。在这里,我们使用单分子光学镊子测量来比较噬菌体、质粒和合成 A 亲合、GC 丰富序列在 T4 马达下的转运。我们观察到马达速度没有显著差异,即使对于预测在高施加力下具有更高转运速率的 A 亲合序列也是如此。我们也没有观察到马达暂停的显著变化,只有滑动的适度变化。为了更普遍地测试序列依赖性,我们对包装事件对进行了相关性分析。在对几种不同 DNA 序列进行的重复测量中,未检测到包装速率、暂停或滑动与序列位置之间的显著相关性。这些研究表明,病毒基因组包装对 DNA 序列不敏感,包装马达速度、暂停和滑动的波动主要是随机的时间事件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4b7/7672480/7a6a6d85d9fe/gkaa875fig1.jpg

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