通过跨亚基相互作用调控噬菌体Φ29中有序DNA易位周期。

IF 9.1 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Rokas Dargis, Joshua Pajak, Pavan Ariyawansa, Marc C Morais, Paul J Jardine, Gaurav Arya
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引用次数: 0

摘要

某些病毒,如尾状噬菌体和单纯疱疹病毒,通过强大的环状分子马达将双链DNA包装成空的原壳体。对噬菌体Φ29 DNA包装马达的高分辨率结构和力测量表明,其五个ATP酶亚基相互协调ATP水解,以维持环上DNA易位步骤的正确循环顺序。在这里,我们探索Φ29马达如何通过跨亚基相互作用,通过定时关键事件,即ATP结合/水解和DNA夹闭来调节易位。我们使用与DNA结合的亚基二聚体作为我们的模型系统,这是一个最小的系统,仍然可以捕获完整的五聚体运动复合物的构象和跨亚基相互作用。全ATP和混合ATP- adp二聚体的分子动力学模拟表明,一个亚基的核苷酸占用通过改变其催化谷氨酸接近ATP的γ磷酸的自由能格局,强烈影响邻近亚基水解ATP的能力。具体来说,一个atp结合亚基在反式中提供残基,在空间上阻断邻近亚基的催化谷氨酸。当第一个亚基水解ATP并与ADP结合时,这种空间位阻就消失了。这种阻碍机制得到功能性诱变的支持,并且似乎在几个Φ29亲缘关系中是保守的。我们模拟的互信息分析揭示了亚基间的信号通路,通过反式作用的阻碍残基,允许相邻亚基的结合口袋之间的传感和通信。这项工作揭示了亚基之间DNA易位事件的顺序是如何通过跨亚基相互作用和途径保存的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regulation of the ordinal DNA translocation cycle in bacteriophage Φ29 through trans-subunit interactions.

Certain viruses such as tailed bacteriophages and herpes simplex virus package double-stranded DNA into empty procapsids via powerful, ring-shaped molecular motors. High-resolution structures and force measurements on the DNA packaging motor of bacteriophage Φ29 revealed that its five ATPase subunits coordinate ATP hydrolysis with each other to maintain the proper cyclic sequence of DNA translocation steps about the ring. Here, we explore how the Φ29 motor regulates translocation by timing key events, namely ATP binding/hydrolysis and DNA gripping, through trans-subunit interactions. We used subunit dimers bound to DNA as our model system, a minimal system that still captures the conformation and trans-subunit interactions of the full pentameric motor complex. Molecular dynamics simulations of all-ATP and mixed ATP-ADP dimers revealed that the nucleotide occupancy of one subunit strongly affects the ability to hydrolyze ATP in the adjacent subunit by altering the free energy landscape of its catalytic glutamate approaching the gamma phosphate of ATP. Specifically, one ATP-bound subunit donates residues in trans that sterically block the neighboring subunit's catalytic glutamate. This steric hindrance is resolved when the first subunit hydrolyzes ATP and is ADP bound. This obstructive mechanism is supported by functional mutagenesis and appears to be conserved across several Φ29 relatives. Mutual information analysis of our simulations revealed intersubunit signaling pathways, via the trans-acting obstructive residues, that allow for sensing and communication between the binding pockets of adjacent subunits. This work reveals how the sequential order of DNA translocation events among subunits is preserved through trans-subunit interactions and pathways.

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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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