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Interactions of the Human MCM-BP Protein with MCM Complex Components and Dbf4

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Journal PLoS One
Date 2012 Apr 28
PMID 22540012
Citations 10
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Abstract

MCM-BP was discovered as a protein that co-purified from human cells with MCM proteins 3 through 7; results which were recapitulated in frogs, yeast and plants. Evidence in all of these organisms supports an important role for MCM-BP in DNA replication, including contributions to MCM complex unloading. However the mechanisms by which MCM-BP functions and associates with MCM complexes are not well understood. Here we show that human MCM-BP is capable of interacting with individual MCM proteins 2 through 7 when co-expressed in insect cells and can greatly increase the recovery of some recombinant MCM proteins. Glycerol gradient sedimentation analysis indicated that MCM-BP interacts most strongly with MCM4 and MCM7. Similar gradient analyses of human cell lysates showed that only a small amount of MCM-BP overlapped with the migration of MCM complexes and that MCM complexes were disrupted by exogenous MCM-BP. In addition, large complexes containing MCM-BP and MCM proteins were detected at mid to late S phase, suggesting that the formation of specific MCM-BP complexes is cell cycle regulated. We also identified an interaction between MCM-BP and the Dbf4 regulatory component of the DDK kinase in both yeast 2-hybrid and insect cell co-expression assays, and this interaction was verified by co-immunoprecipitation of endogenous proteins from human cells. In vitro kinase assays showed that MCM-BP was not a substrate for DDK but could inhibit DDK phosphorylation of MCM4,6,7 within MCM4,6,7 or MCM2-7 complexes, with little effect on DDK phosphorylation of MCM2. Since DDK is known to activate DNA replication through phosphorylation of these MCM proteins, our results suggest that MCM-BP may affect DNA replication in part by regulating MCM phosphorylation by DDK.

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References
1.
Sheu Y, Stillman B . The Dbf4-Cdc7 kinase promotes S phase by alleviating an inhibitory activity in Mcm4. Nature. 2010; 463(7277):113-7. PMC: 2805463. DOI: 10.1038/nature08647. View

2.
Hubbi M, Luo W, Baek J, Semenza G . MCM proteins are negative regulators of hypoxia-inducible factor 1. Mol Cell. 2011; 42(5):700-12. PMC: 3131976. DOI: 10.1016/j.molcel.2011.03.029. View

3.
Ishimi Y, You Z, Omori A, Kitagawa M . Inhibition of Mcm4,6,7 helicase activity by phosphorylation with cyclin A/Cdk2. J Biol Chem. 2000; 275(21):16235-41. DOI: 10.1074/jbc.M909040199. View

4.
Jones D, Prasad A, Chan P, Duncker B . The Dbf4 motif C zinc finger promotes DNA replication and mediates resistance to genotoxic stress. Cell Cycle. 2010; 9(10):2018-26. DOI: 10.4161/cc.9.10.11752. View

5.
Li J, Schnick J, Hayles J, MacNeill S . Purification and functional inactivation of the fission yeast MCM(MCM-BP) complex. FEBS Lett. 2011; 585(24):3850-5. DOI: 10.1016/j.febslet.2011.10.033. View