Helicase Activity Promoted Through Dynamic Interactions Between a ssDNA Translocase and a Diffusing SSB Protein
Mersch, K.; Sokoloski, J. E.; Nguyen, B.; Galletto, R.; Lohman, T. M.
Show abstract
Replication protein A (RPA) is a eukaryotic single stranded (ss) DNA binding (SSB) protein that is essential for all aspects of genome maintenance. RPA binds ssDNA with high affinity but can also diffuse along ssDNA. By itself, RPA is capable of transiently disrupting short regions of duplex DNA by diffusing from a ssDNA that flanks the duplex DNA. Using single molecule total internal reflection fluorescence and optical trapping combined with fluorescence approaches we show that S. cerevisiae Pif1 can use its ATP-dependent 5 to 3 translocase activity to chemo-mechanically push a single human RPA (hRPA) directionally along ssDNA at rates comparable to those of Pif1 translocation alone. We further show that using its translocation activity Pif1 can push hRPA from a ssDNA loading site into a duplex DNA causing stable disruption of at least 9 bp of duplex DNA. These results highlight the dynamic nature of hRPA enabling it to be readily reorganized even when bound tightly to ssDNA and demonstrate a new mechanism by which directional DNA unwinding can be achieved through the combined action of a ssDNA translocase that pushes an SSB protein.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Uncovering nick DNA binding by LIG1 at the single-molecule level 97%
- Mechanistic insights into direct DNA and RNA strand transfer and dynamic protein exchange of SSB and RPA 97%
- RNA polymerase clamp conformational dynamics: long-lived states and modulation by crowding, cations, and nonspecific DNA binding 97%
Similar papers in this journal
- Dimerization of Cdc13 is essential for dynamic DNA exchange on telomeric DNA 96%
- An intrinsically disordered transcription activation domain alters the DNA binding affinity and specificity of NFκB p50/RelA 95%
- Termination of DNA replication at Tus-ter barriers results in under-replication of template DNA 95%
"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.