Orc6 at replication fork enables efficient mismatch repair

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Abstract

In eukaryotes, the Origin Recognition Complex (ORC) is required for the initiation of DNA replication. The smallest subunit of ORC, Orc6, is essential for pre-replication complex (pre-RC) assembly and cell viability in yeast and for cytokinesis in metazoans. However, unlike other ORC components, the role of human Orc6 in replication remains to be resolved. Here, we identify an unexpected role for hOrc6, which is to promote S-phase progression post pre-RC assembly and DNA damage response. Orc6 localizes at the replication fork and is an accessory factor of the mismatch repair (MMR) complex. In response to oxidative damage during S-phase, often repaired by MMR, Orc6 facilitates MMR complex assembly and activity, without which the checkpoint signaling is abrogated. Mechanistically, Orc6 directly binds to MutSα and enhances the chromatin-association of MutLα, thus enabling efficient mismatch repair. Based on this, we conclude that hOrc6 plays a fundamental role in genome surveillance during S-phase. Abstract Figure Highlights Human Orc6 is dispensable for G1 licensing, but required for S-phase progression Human Orc6 at the replication fork is an accessory factor for MMR complex Depletion of hOrc6 sensitizes cells to DNA damage and impairs ATR activation Human Orc6 regulates MMR complex assembly and activity

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last seen: 2026-05-19T01:45:01.086888+00:00