bioRxiv · 10.1101/2020.08.10.245076
A human cancer cell line initiates DNA replication normally in the absence of ORC5 and ORC2 proteins
Abstract
The Origin Recognition Complex (ORC), composed of six subunits, ORC1-6, binds to origins of replication as a ring-shaped heterohexameric ATPase that is believed to be essential to recruit and load MCM2-7 around DNA and initiate DNA replication. We had reported the creation of viable cancer cell lines that lacked detectable ORC1 or ORC2 protein without a significant decrease in the number of origins firing. We now report that human HCT116 colon cancer cells also survive with a mutation in the initiator ATG of the ORC5 gene that abolishes the expression of ORC5 protein. Even if an internal methionine is used to produce an undetectable, N terminally deleted ORC5, the protein would lack 80% of the AAA+ ATPase domain, including the Walker A motif. The ORC5-depleted cells show normal chromatin binding of MCM2-7 and initiate replication from similar number of origins as wild type cells. In addition, we introduced a second mutation in ORC2 in the ORC5 mutant cells rendering both ORC5 and ORC2 proteins undetectable in the same cells, and destabilizing the ORC1, ORC3 and ORC4 proteins. Yet the double mutant cells grow, recruit MCM2-7 normally to chromatin and initiate DNA replication with normal number of origins. Thus, in these selected cancer cells, either a crippled ORC lacking ORC2 and ORC5 and present at minimal levels on the chromatin can recruit and load enough MCM2-7 to initiate DNA replication, or human cell-lines can sometimes recruit MCM2-7 to origins independent of ORC.
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Shibata, E., Dutta, A.. 2020-08-10. A human cancer cell line initiates DNA replication normally in the absence of ORC5 and ORC2 proteins. https://doi.org/10.1101/2020.08.10.245076
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