Mechanisms of MCM2–7 helicase activation and initial DNA melting at near base-pair resolution

C Christopher Weekes L Lia Willerding S Sanjay P. Khadayate K Korbinian Liebl A Audrey Mossler A Alex Montoya V Vanessa Rauthe M Mohammad M. Karimi M Martin Zacharias (Center for Functional Protein Assemblies, School of Natural Sciences, Technical University of Munich , Ernst-Otto-Fischer-Straße 8, Garching,) H Helle D. Ulrich C Christian Speck L L. Maximilian Reuter

Abstract

Abstract During eukaryotic DNA replication initiation, inactive MCM2–7 double-hexamers assembled at replication origins must be converted into two active CMG helicases, yet how this transition is coupled to origin DNA unwinding in vivo remains unclear. Here, we identify a DNA-bound intermediate with an extended genomic footprint that forms during helicase activation. Genome-wide mapping of initial strand separation reveals that DNA unwinding initiates near the N-terminal interface of opposing MCM2–7 hexamers. At these sites, the origin DNA exhibits a conserved AT-rich/GC-rich/AT-rich sequence architecture centred under the helicase complex, which is associated with an elevated DNA melting probability. We further show that restricting hexamer splitting delays release of the Cdc45-loading factor Sld3, demonstrating that mechanical transitions during helicase activation are tightly coupled to complex disassembly. Finally, we provide in vivo evidence that single-stranded DNA is ejected through a specialised DNA exit gate at the Mcm2/5 interface during helicase activation, which is dispensable for ongoing DNA synthesis. Together, these findings establish a mechanistic framework for how replication origins are remodelled to initiate DNA replication and reveal key intermediates and DNA transactions during helicase activation.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 23, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

C

Christopher Weekes

L

Lia Willerding

S

Sanjay P. Khadayate

K

Korbinian Liebl

A

Audrey Mossler

A

Alex Montoya

V

Vanessa Rauthe

M

Mohammad M. Karimi

M

Martin Zacharias

Center for Functional Protein Assemblies, School of Natural Sciences, Technical University of Munich , Ernst-Otto-Fischer-Straße 8, Garching,

H

Helle D. Ulrich

C

Christian Speck

L

L. Maximilian Reuter