Early intermediates in bacterial RNA polymerase promoter melting visualized by time-resolved cryo-electron microscopy.
Ruth M SaeckerAndreas U MuellerBrandon F MaloneJames ChenWilliam C BudellVenkata P DandeyKashyap MaruthiJoshua H MendezNina MolinaEdward T EngLaura Y YenClinton S PotterBridget CarragherSeth A DarstPublished in: bioRxiv : the preprint server for biology (2024)
During formation of the transcription-competent open complex (RPo) by bacterial RNA polymerases (RNAP), transient intermediates pile up before overcoming a rate-limiting step. Structural descriptions of these interconversions in real time are unavailable. To address this gap, time-resolved cryo-electron microscopy (cryo-EM) was used to capture four intermediates populated 120 or 500 milliseconds (ms) after mixing Escherichia coli σ 70 -RNAP and the λP R promoter. Cryo-EM snapshots revealed the upstream edge of the transcription bubble unpairs rapidly, followed by stepwise insertion of two conserved nontemplate strand (nt-strand) bases into RNAP pockets. As nt-strand "read-out" extends, the RNAP clamp closes, expelling an inhibitory σ 70 domain from the active-site cleft. The template strand is fully unpaired by 120 ms but remains dynamic, indicating yet unknown conformational changes load it in subsequent steps. Because these events likely describe DNA opening at many bacterial promoters, this study provides needed insights into how DNA sequence regulates steps of RPo formation.
Keyphrases
- electron microscopy
- transcription factor
- single molecule
- escherichia coli
- mass spectrometry
- circulating tumor
- dna methylation
- multiple sclerosis
- ms ms
- gene expression
- cell free
- high resolution
- nucleic acid
- minimally invasive
- molecular dynamics
- molecular dynamics simulations
- cystic fibrosis
- brain injury
- liquid chromatography