- Main
Apical localization of RNA polymerases modulates transcription dynamics and supercoiling domains revealed by cryo-ET
- Zhang, Meng;
- Cañari-Chumpitaz, Cristhian;
- Liu, Jianfang;
- Onoa, Bibiana;
- de Cleir, Sinead;
- Cheng, Enze;
- Requejo, Katherinne I;
- Bustamante, Carlos
Published Web Location
https://doi.org/10.1016/j.molcel.2026.04.013Abstract
Protein interactions with canonical B-form DNA are well characterized, yet the effect of torsionally constrained DNA on these interactions-ubiquitous in cells-remains underexplored. Using cryo-electron tomography (cryo-ET), we 3D-reconstructed entire negatively supercoiled DNA substrates bound to active RNA polymerase (RNAP), revealing diverse DNA supercoiling conformations and their interplay with transcription. RNAP preferentially localizes at plectoneme apices in a swiveled, pause-prone state. RNAP, along with other DNA-melting proteins such as dCas9, can act as torsional roadblocks that segregate "twin-supercoiling domains" during active transcription, independent of external DNA/RNAP tethering. Co-transcribing RNAPs further intensify this domain separation: tandem-oriented RNAPs relieve negative supercoiling more effectively than opposing ones and promote greater RNAP accumulation and enhanced elongation, both in vitro and in vivo. Topoisomerase I relieves torsional stress and facilitates RNAP escape from apical stalls, thereby supporting apical transcription regulation. Together, these findings support a load-and-release mechanism at plectoneme apices that may underlie supercoiling-dependent transcriptional bursting.
Many UC-authored scholarly publications are freely available on this site because of the UC's open access policies. Let us know how this access is important for you.