Summary information and primary citation
- PDB-id
-
8eg8;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- transcription, transferase-DNA-RNA
- Method
- cryo-EM (3.3 Å)
- Summary
- cryo-EM structure of consensus elemental paused
elongation complex with a folded tl
- Reference
-
Kang JY, Mishanina TV, Bao Y, Chen J, Llewellyn E, Liu J,
Darst SA, Landick R (2023): "An
ensemble of interconverting conformations of the
elemental paused transcription complex creates regulatory
options." Proc.Natl.Acad.Sci.USA,
120, e2215945120. doi: 10.1073/pnas.2215945120.
- Abstract
- Transcriptional pausing underpins the regulation of
cellular RNA synthesis, but its mechanism remains
incompletely understood. Sequence-specific interactions of
DNA and RNA with the dynamic, multidomain RNA polymerase
(RNAP) trigger reversible conformational changes at pause
sites that temporarily interrupt the nucleotide addition
cycle. These interactions initially rearrange the
elongation complex (EC) into an elemental paused EC (ePEC).
ePECs can form longer-lived PECs by further rearrangements
or interactions of diffusible regulators. For both
bacterial and mammalian RNAPs, a half-translocated state in
which the next DNA template base fails to load into the
active site appears central to the ePEC. Some RNAPs also
swivel interconnected modules that may stabilize the ePEC.
However, it is unclear whether swiveling and
half-translocation are requisite features of a single ePEC
state or if multiple ePEC states exist. Here, we use
cryo-electron microscopy (cryo-EM) analysis of ePECs with
different RNA-DNA sequences combined with biochemical
probes of ePEC structure to define an interconverting
ensemble of ePEC states. ePECs occupy either pre- or
half-translocated states but do not always swivel,
indicating that difficulty in forming the posttranslocated
state at certain RNA-DNA sequences may be the essence of
the ePEC. The existence of multiple ePEC conformations has
broad implications for transcriptional regulation.