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细菌在生长停滞期的转录。

Bacterial transcription during growth arrest.

机构信息

School of Life Sciences, University of Dundee, Dundee, UK.

出版信息

Transcription. 2021 Aug;12(4):232-249. doi: 10.1080/21541264.2021.1968761. Epub 2021 Sep 6.

Abstract

Bacteria in most natural environments spend substantial periods of time limited for essential nutrients and not actively dividing. While transcriptional activity under these conditions is substantially reduced compared to that occurring during active growth, observations from diverse organisms and experimental approaches have shown that new transcription still occurs and is important for survival. Much of our understanding of transcription regulation has come from measuring transcripts in exponentially growing cells, or from experiments focused on transcription from highly active promoters by the housekeeping RNA polymerase holoenzyme. The fact that transcription during growth arrest occurs at low levels and is highly heterogeneous has posed challenges for its study. However, new methods of measuring low levels of gene expression activity, even in single cells, offer exciting opportunities for directly investigating transcriptional activity and its regulation during growth arrest. Furthermore, much of the rich structural and biochemical data from decades of work on the bacterial transcriptional machinery is also relevant to growth arrest. In this review, the physiological changes likely affecting transcription during growth arrest are first considered. Next, possible adaptations to help facilitate ongoing transcription during growth arrest are discussed. Finally, new insights from several recently published datasets investigating mRNA transcripts in single bacterial cells at various growth phases will be explored. Keywords: Growth arrest, stationary phase, RNA polymerase, nucleoid condensation, population heterogeneity.

摘要

大多数自然环境中的细菌会有相当长的一段时间处于基本营养物质受限且不活跃分裂的状态。虽然与活跃生长时相比,这些条件下的转录活性大大降低,但来自不同生物的观察和实验方法表明,新的转录仍在发生,这对生存很重要。我们对转录调控的理解很大程度上来自于测量指数生长期细胞中的转录本,或者来自于专注于由管家 RNA 聚合酶全酶转录高度活跃启动子的实验。事实上,生长停滞期间的转录以低水平发生且高度异质,这给其研究带来了挑战。然而,测量低水平基因表达活性(即使在单细胞中)的新方法为直接研究生长停滞期间的转录活性及其调控提供了令人兴奋的机会。此外,几十年来关于细菌转录机制的丰富结构和生化数据在很大程度上也与生长停滞有关。在这篇综述中,首先考虑了可能影响生长停滞期间转录的生理变化。接下来,讨论了有助于促进生长停滞期间持续转录的可能适应。最后,将探讨最近发表的几个数据集,这些数据集在不同的生长阶段调查了单个细菌细胞中的 mRNA 转录本,以获得新的见解。关键词:生长停滞、静止期、RNA 聚合酶、核凝聚、群体异质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be4a/8632087/f0b2b1a1c9bf/KTRN_A_1968761_F0001_B.jpg

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