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The dynamic landscape of transcription initiation in yeast mitochondria

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Title
The dynamic landscape of transcription initiation in yeast mitochondria
Author(s)
Sohn, Byeong-Kwon; Basu, Urmimala; Lee, Seung-Won; Cho, Hayoon; Shen, Jiayu; Deshpande, Aishwarya; Johnson, Laura C.; Das, Kalyan; Patel, Smita S.; Hajin Kim
Publication Date
2020-08
Journal
Nature Communications, v.11, no.1
Publisher
Nature Publishing Group
Abstract
Controlling efficiency and fidelity in the early stage of mitochondrial DNA transcription is crucial for regulating cellular energy metabolism. Conformational transitions of the transcription initiation complex must be central for such control, but how the conformational dynamics progress throughout transcription initiation remains unknown. Here, we use single-molecule fluorescence resonance energy transfer techniques to examine the conformational dynamics of the transcriptional system of yeast mitochondria with single-base resolution. We show that the yeast mitochondrial transcriptional complex dynamically transitions among closed, open, and scrunched states throughout the initiation stage. Then abruptly at position +8, the dynamic states of initiation make a sharp irreversible transition to an unbent conformation with associated promoter release. Remarkably, stalled initiation complexes remain in dynamic scrunching and unscrunching states without dissociating the RNA transcript, implying the existence of backtracking transitions with possible regulatory roles. The dynamic landscape of transcription initiation suggests a kinetically driven regulation of mitochondrial transcription. Conformational dynamics during the early stage of transcription is crucial to understanding the regulation of transcription efficiency and fidelity. Here the authors, by single-molecule fluorescence resonance energy transfer approaches, examine the conformational dynamics of the two-component transcription system of yeast mitochondria with single-base resolution.
URI
https://pr.ibs.re.kr/handle/8788114/15506
DOI
10.1038/s41467-020-17793-2
Appears in Collections:
Center for Genomic Integrity(유전체 항상성 연구단) > 1. Journal Papers (저널논문)
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