Dissecting the role of PCNA and Pif1 in replication of individual DNA molecules by DNA polymerase δ.
Zaher, M. S.; Stith, C.; Mistry, A.; Poudel, P. B.; Antony, E.; Burgers, P. M.; Galletto, R.
Show abstract
PCNA loading and stabilization at primer-template junctions is crucial for processive DNA synthesis by replicative polymerases. It is also essential for strand displacement synthesis during Break Induced Replication (BIR). In this study, we employed a single molecule approach to directly visualize the role of PCNA, DNA polymerase {delta} and the Pif1 DNA helicase in these pathways. We first dissected the preferential loading of PCNA by RFC to 3-junctions of gaps, nicks and flapped substrates. Moreover, we found that Pol {delta} and Pif1 both stabilize loaded PCNA and reduce its diffusion coefficient along DNA. We further show that the interaction of PCNA with Pol {delta} is essential for gap-filling synthesis. On a 5-flapped substrate, we show that both Pol {delta} and Pif1 are required for strand displacement synthesis, while PCNA is not; although, it stimulates the process.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Polymerase theta-helicase promotes end joining by stripping single-stranded DNA-binding proteins and bridging DNA ends 98%
- RADX condenses single-stranded DNA to antagonize RAD51 loading 97%
- Nanopore tweezers measurements of RecQ conformational changes reveal the energy landscape of helicase motion 97%
Similar papers in this journal
- Changing protein-DNA interactions promote ORC binding site exchange during replication origin licensing. 97%
- Structural and mechanistic basis of σ-dependent transcriptional pausing 97%
- Sequence-dependent mechanochemical coupling of helicase translocation and unwinding at single-nucleotide resolution. 97%
Similar papers in this journal
Similar papers in this journal
- The interplay of RNA:DNA hybrid structure and G-quadruplexes determines the outcome of R-loop-replisome collisions 97%
- Transcription initiation at a consensus bacterial promoter proceeds via a "bind-unwind-load-and-lock" mechanism 96%
- Synthetic analysis of chromatin tracing and live-cell imaging indicates pervasive spatial coupling between genes 96%
Similar papers in this journal
- SMARCAD1 Mediated Active Replication Fork Stability Maintains Genome Integrity 97%
- Relief of ParB autoinhibition by parS DNA catalysis and ParB recycling by CTP hydrolysis promote bacterial centromere assembly. 96%
- The ICF syndrome protein CDCA7 harbors a unique DNA-binding domain that recognizes a CpG dyad in the context of a non-B DNA 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.