Related Experiment Video
Updated: Feb 9, 2026

Single-Molecule Fluorescence Visualization of DNA Polymerase Dynamics at G-Quadruplexes
Published on: April 4, 2025
Consecutive ribonucleoside monophosphates on template inhibit DNA replication by T7 DNA polymerase or by T7
Zhenyu Zou1, Ze Chen1, Ying Cai1
1Institute of Toxicology, College of Preventive Medicine, The Third Medical University, Chongqing, China.
Abstract:
rNTPs are structurally similar to dNTPs but are largely molar excessive in cell than dNTPs. rNTPs are inevitably incorporated into DNA to form rNMPs. Long RNA primers can also be incorporated into lagging-strand DNA. However, the influence of these incorporated rNMPs on T7 DNA replication remains unknown. In this work, we investigated primer extension past consecutive rNMPs (rA, r(AC), r(ACC), or r(ACCA)) on template by T7 DNA polymerase or by its complex with helicase. Primer extension is gradually inhibited with increasing rNMP number. rNMPs decrease the dNTP incorporation efficiency, slightly weaken the binding affinity of polymerase to DNA in ternary complex, and reduce the protein interaction between polymerase and helicase at DNA fork, thereby decreasing the fraction of the productive enzyme·DNA complex and the average primer extension rate. Therefore, the consecutive rNMPs on template gradually inhibit T7 primer extension and strand-displacement DNA synthesis, providing the kinetic information for the inhibition of rNMPs on DNA replication.
Related Concept Videos
Translesion DNA Polymerases
TLS polymerases are found in all three domains of life - archaea, bacteria, and eukaryotes. Of the different classes of TLS polymerases, members of the Y family are fitted with specialized structures that...
DNA Replication
Replication in Prokaryotes
DNA replication...
DNA Helicases
The DNA Replication Fork
Bacterial RNA Polymerase
In most genes, the transcription site is a single base present upstream of the coding sequence. Though RNAP is a catalytically efficient enzyme, it does not recognize...
DNA as a Genetic Template

