构建了一个化学计量为6的活性嵌合pRNA环,并鉴定了与phi29 DNA包装马达的12个亚基通道结合的12个pRNA环结构域。

IF 4.2 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
RNA Pub Date : 2025-04-01 DOI:10.1261/rna.080383.125
Margaret Bohmer, Daniel W Binzel, Wen Zhang, Peixuan Guo
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引用次数: 0

摘要

在双链RNA或DNA病毒复制的最后阶段,它们的基因组被包装成一个预组装的蛋白质衣壳。细菌病毒phi29 dsDNA包装马达使用非编码包装RNA (pRNA)分子来调整其基因组DNA易位。在本研究中,我们将细菌病毒M2的pRNA与phi29的pRNA融合,构建了嵌合pRNA。嵌合pRNAs可以形成二聚体或三聚体。二聚体或三聚体pRNAs在将phi29 dsDNA基因组包装成纯化的原衣壳中具有活性,随后转化为感染性病毒,通过计数斑块形成单位(PFU)证明了这一点。这些数据表明,马达上嵌合prna的化学计量是2和3的倍数,即6。此外,对融合到rna -三角形的pRNA的AFM研究显示了六聚体的形成。但是6个相同的RNA是如何通过双重化学计量固定在12个亚基的连接器上的呢?结构分析结合酶和化学探测数据表明,每个天然pRNA在3个正改变残基RKR上提供2个结构域与12个亚基dna包装通道结合,证明了六聚环的形成。解决六聚体与五聚体的争论将澄清dsDNA在生物体中的易位机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Constructing an active chimeric pRNA ring with a stoichiometry of six and identifying 12 domains of the pRNA ring binding to the 12-subunit channel of phi29 DNA packaging motor.

During the last stage of replication of double-stranded RNA or DNA viruses, their genome is packaged into a preassembled protein capsid. The bacterial virus phi29 dsDNA packaging motor uses a noncoding packaging RNA (pRNA) molecule to gear its genomic DNA translocation. In this study, we constructed chimeric pRNAs by fusing the pRNA of bacterial virus M2 and that of phi29. The chimeric pRNAs can form dimers or trimers. The dimeric or trimeric pRNAs were active in the packaging of the phi29 dsDNA genome into the purified procapsid, which was subsequently converted into the infectious viruses, as proven by counting plaque-forming-units (PFU). These data show that the stoichiometry of the chimeric pRNAs on the motor is a multiple of 2 and 3, which is 6. Furthermore, AFM studies on pRNA fused to an RNA-triangle revealed hexamer formation. But how do the six identical RNA anchor on the 12-subunit connector with the double stoichiometry? Structural analysis in combination with enzymatic and chemical probing data revealed that each native pRNA contributes 2 domains to bind to the 12-subunit DNA-packaging channel at 3 positively changed residues RKR, proving the formation of the hexameric ring. Resolving the hexamer versus pentamer debate will clarify the mechanism of dsDNA translocation in living organisms.

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来源期刊
RNA
RNA 生物-生化与分子生物学
CiteScore
8.30
自引率
2.20%
发文量
101
审稿时长
2.6 months
期刊介绍: RNA is a monthly journal which provides rapid publication of significant original research in all areas of RNA structure and function in eukaryotic, prokaryotic, and viral systems. It covers a broad range of subjects in RNA research, including: structural analysis by biochemical or biophysical means; mRNA structure, function and biogenesis; alternative processing: cis-acting elements and trans-acting factors; ribosome structure and function; translational control; RNA catalysis; tRNA structure, function, biogenesis and identity; RNA editing; rRNA structure, function and biogenesis; RNA transport and localization; regulatory RNAs; large and small RNP structure, function and biogenesis; viral RNA metabolism; RNA stability and turnover; in vitro evolution; and RNA chemistry.
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