Huilin Li
Professor
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Articles (20)
Structure of the PCNA unloader Elg1-RFC
During DNA replication, the proliferating cell nuclear antigen (PCNA) clamps are loaded onto primed sites for each Okazaki fragment synthesis by the AAA + heteropentamer replication factor C (RFC). PCNA encircling duplex DNA is quite stable and is removed from DNA by the dedicated clamp unloader Elg1-RFC. Here, we show the cryo-EM structure of Elg1-RFC in various states with PCNA. The structures reveal essential features of Elg1-RFC that explain how it is dedicated to PCNA unloading. Specifically, Elg1 contains two external loops that block opening of the Elg1-RFC complex for DNA binding, and an “Elg1 plug” domain that fills the central DNA binding chamber, thereby reinforcing the exclusive PCNA unloading activity of Elg1-RFC. Elg1-RFC was capable of unloading PCNA using non-hydrolyzable AMP-PNP. Both RFC and Elg1-RFC could remove PCNA from covalently closed circular DNA, indicating that PCNA unloading occurs by a mechanism that is distinct from PCNA loading. Implications for the PCNA unloading mechanism are discussed.
Year:
2024
Collaborators (6)
Balraj Doray
Associate Professor of Medicine
Washington University in Saint Louis School of Medicine
Michael E. O’Donnell
Rockefeller University
K Heran Darwin
Professor
NYU School of Medicine
Richard Vierstra
Professor
Washington University in St. Louis
Michelle Spiering
Associate Research Professor
Pennsylvania State University
Kelley Moremen
Professor
University of Georgia

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