Hazra Nilanjana, Mukhopadhyay Jayanta
Department of Chemical Sciences, Bose Institute, Kolkata, West Bengal, India.
J Bacteriol. 2025 Jul 24;207(7):e0015425. doi: 10.1128/jb.00154-25. Epub 2025 Jun 24.
The conventional idea of prokaryotic transcription represents a collection of pathways assembled from disparate studies across diverse bacterial species. This cumulative approach, though reveals core-conserved mechanisms, likely excludes the transcriptional pathways unique to an organism. The understanding of mycobacterial transcription suffers from such generalizations as its extreme GC bias, complex RNA polymerase (RNAP), abundance of short transcripts predominating its transcriptome, extensive σ factor utilization, and a constant battle against host stress implicates a distinct transcriptional landscape. This review highlights specific insights into mycobacterial RNAP architecture, promoter recognition, and elongation dynamics, against the general comprehensive narration of bacterial transcription.
原核生物转录的传统观念是由对多种细菌物种的不同研究汇总而成的一系列途径。这种累积方法虽然揭示了核心保守机制,但可能排除了特定生物体特有的转录途径。对分枝杆菌转录的理解就受这种概括的影响,因为其极端的GC偏好、复杂的RNA聚合酶(RNAP)、转录组中大量占主导的短转录本、广泛的σ因子利用以及与宿主应激的持续斗争暗示了一种独特的转录格局。与对细菌转录的一般全面叙述不同,本综述重点介绍了对分枝杆菌RNAP结构、启动子识别和延伸动力学的具体见解。