Structure of the pre-initiation complex explains CMGE biogenesis

Структура прекомплекса и объяснение биогенеза CMGE
John F.X. Diffley, Oliver Willhöft, Alessandro Costa, Jacob S. Lewis, Agata Butryn, Thomas Pühringer, Berta Canal, Giacomo Palm, Emma C. Couves
2026-06-17

CMGE biogenesisMCM double hexamerSld2 / RECQL4cryo-electron microscopypre-initiation complex
Abstract When cells enter S phase, bidirectional DNA replication is initiated through the kinase-regulated recruitment of three activators (Cdc45, GINS and Pol ε) to a duplex-DNA-loaded double hexamer of minichromosome maintenance (MCM) ATPases. Together, these proteins form two CMGE helicases that establish divergent replication forks as they become separated 1 . Here, to gain an understanding of CMGE biogenesis, we reconstituted the pre-initiation complex with purified yeast proteins. The cryo-electron-microscopy structure shows a set of firing factors caught in the act of assembling two symmetrical CMGEs. We show how stepwise complex formation reshapes MCM in preparation for DNA opening, and we explain how ATP promotes firing-factor ejection and CMGE maturation. We find that although Sld2 facilitates the recruitment of GINS to MCM, as expected, it also aids the efficient separation of the CMGE dimer, and is essential for the ejection of the lagging strand from MCM. These findings have direct implications for our understanding of the metazoan Sld2 orthologue, RECQL4, and point to a replication-fork establishment mechanism that is conserved across eukaryotes.
1
ATP promotes firing-factor ejection and maturation of CMGE helicases.
2
Cryo-EM structure of reconstituted yeast pre-initiation complex captures firing factors assembling two symmetrical CMGEs.
3
Sld2 facilitates GINS recruitment to MCM and also promotes efficient separation of the CMGE dimer.
4
Sld2 is essential for ejection of the lagging strand from MCM, implying a conserved replication-fork establishment mechanism and relevance to metazoan RECQL4.
5
Stepwise complex formation reshapes the MCM double hexamer to prepare for DNA opening during CMGE biogenesis.

Reconstituted pre-initiation complex (firing factors assembled on duplex-DNA-loaded MCM double hexamer) from purified yeast proteins

Structural mechanism of CMGE biogenesis: stepwise assembly of firing factors, MCM remodelling for DNA opening, ATP-driven firing-factor ejection and CMGE maturation, including Sld2-mediated GINS recruitment, CMGE dimer separation and lagging-strand ejection

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2026-06-17
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John F.X. Diffley
Oliver Willhöft
Alessandro Costa
Jacob S. Lewis
Agata Butryn
Thomas Pühringer
Berta Canal
Giacomo Palm
Emma C. Couves
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