EMD-15922

Single-particle
3.3 Å
EMD-15922 Deposition: 05/10/2022
Map released: 02/08/2023
Last modified: 30/08/2023
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-15922

Human replisome bound to pol alpha engaged on a DNA fork substrate containing a 15 nucleotide lagging strand.

EMD-15922

Single-particle
3.3 Å
EMD-15922 Deposition: 05/10/2022
Map released: 02/08/2023
Last modified: 30/08/2023
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Homo sapiens
Sample: Human replisome bound by pol alpha, engaged on a fork DNA substrate with a 60 nucleotide lagging strand.

Deposition Authors: Jones ML , Yeeles JTP
How Pol alpha-primase is targeted to replisomes to prime eukaryotic DNA replication.
Jones ML , Aria V, Baris Y , Yeeles JTP
(2023) Mol Cell , 83 , 2911 - 2924.e16
PUBMED: 37506699
DOI: doi:10.1016/j.molcel.2023.06.035
ISSN: 1097-2765
ASTM: MOCEFL
Abstract:
During eukaryotic DNA replication, Pol α-primase generates primers at replication origins to start leading-strand synthesis and every few hundred nucleotides during discontinuous lagging-strand replication. How Pol α-primase is targeted to replication forks to prime DNA synthesis is not fully understood. Here, by determining cryoelectron microscopy (cryo-EM) structures of budding yeast and human replisomes containing Pol α-primase, we reveal a conserved mechanism for the coordination of priming by the replisome. Pol α-primase binds directly to the leading edge of the CMG (CDC45-MCM-GINS) replicative helicase via a complex interaction network. The non-catalytic PRIM2/Pri2 subunit forms two interfaces with CMG that are critical for in vitro DNA replication and yeast cell growth. These interactions position the primase catalytic subunit PRIM1/Pri1 directly above the exit channel for lagging-strand template single-stranded DNA (ssDNA), revealing why priming occurs efficiently only on the lagging-strand template and elucidating a mechanism for Pol α-primase to overcome competition from RPA to initiate primer synthesis.