Steps toward translocation-independent RNA polymerase inactivation by terminator ATPase ρ.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 33243850.
- Also identified by DOI 10.1126/science.abd1673 and PMC identifier 7864586.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
Factor-dependent transcription termination mechanisms are poorly understood. We determined a series of cryo-electron microscopy structures portraying the hexameric adenosine triphosphatase (ATPase) ρ on a pathway to terminating NusA/NusG-modified elongation complexes. An open ρ ring contacts NusA, NusG, and multiple regions of RNA polymerase, trapping and locally unwinding proximal upstream DNA. NusA wedges into the ρ ring, initially sequestering RNA. Upon deflection of distal upstream DNA over the RNA polymerase zinc-binding domain, NusA rotates underneath one capping ρ subunit, which subsequently captures RNA. After detachment of NusG and clamp opening, RNA polymerase loses its grip on the RNA:DNA hybrid and is inactivated. Our structural and functional analyses suggest that ρ, and other termination factors across life, may use analogous strategies to allosterically trap transcription complexes in a moribund state.
Medical subject headings
- Adenosine Triphosphatases
- DNA-Directed RNA Polymerases
- Escherichia coli
- Rho Factor
- Transcription Elongation, Genetic