Suppr超能文献

单分子研究揭示了偏离路径的基本暂停状态是链霉溶菌素抑制RNA聚合酶的靶点,以及Gre因子对其的显著增强作用。

Single-molecule studies reveal the off-pathway elemental pause state as a target of streptolydigin inhibition of RNA polymerase and its dramatic enhancement by Gre factors.

作者信息

Arseniev Anatolii, Panfilov Mikhail, Pobegalov Georgii, Potyseva Alina, Pavlinova Polina, Yakunina Maria, Lee Jookyung, Borukhov Sergei, Severinov Konstantin, Khodorkovskii Mikhail

机构信息

Peter the Great St. Petersburg Polytechnic University, Saint Petersburg, Russia.

Institute of Molecular Genetics, Russian Academy of Sciences, Moscow, Russian Federation.

出版信息

bioRxiv. 2023 Jun 5:2023.06.05.542125. doi: 10.1101/2023.06.05.542125.

Abstract

Antibiotic streptolydigin (Stl) inhibits bacterial transcription by blocking the trigger loop folding in the active center of RNA polymerase (RNAP), which is essential for catalysis. We use acoustic force spectroscopy to characterize the dynamics of transcription elongation in ternary elongation complexes of RNAP (ECs) in the presence of Stl at a single-molecule level. We found that Stl induces long-lived stochastic pauses while the instantaneous velocity of transcription between the pauses is unaffected. Stl enhances the short-lived pauses associated with an off-pathway elemental paused state of the RNAP nucleotide addition cycle. Unexpectedly, we found that transcript cleavage factors GreA and GreB, which were thought to be Stl competitors, do not alleviate the streptolydigin-induced pausing; instead, they synergistically increase transcription inhibition by Stl. This is the first known instance of a transcriptional factor enhancing antibiotic activity. We propose a structural model of the EC-Gre-Stl complex that explains the observed Stl activities and provides insight into possible cooperative action of secondary channel factors and other antibiotics binding at the Stl-pocket. These results offer a new strategy for high-throughput screening for prospective antibacterial agents.

摘要

抗生素链霉溶菌素(Stl)通过阻断RNA聚合酶(RNAP)活性中心的触发环折叠来抑制细菌转录,而触发环折叠对于催化作用至关重要。我们使用声镊光谱技术在单分子水平上表征了在存在Stl的情况下RNAP三元延伸复合物(ECs)中转录延伸的动力学。我们发现,Stl会诱导长寿命的随机暂停,而暂停之间转录的瞬时速度不受影响。Stl增强了与RNAP核苷酸添加循环的偏离途径的基本暂停状态相关的短寿命暂停。出乎意料的是,我们发现转录切割因子GreA和GreB,它们被认为是Stl的竞争者,并不会减轻链霉溶菌素诱导的暂停;相反,它们会协同增加Stl对转录的抑制作用。这是转录因子增强抗生素活性的首个已知实例。我们提出了一个EC-Gre-Stl复合物的结构模型,该模型解释了观察到的Stl活性,并深入了解了二级通道因子和其他在Stl口袋结合的抗生素可能的协同作用。这些结果为高通量筛选潜在抗菌剂提供了一种新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7956/10274647/5ec32afb1ad3/nihpp-2023.06.05.542125v1-f0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验