Switch on the engine: how the eukaryotic replicative helicase MCM2-7 becomes activated

被引:34
作者
Tognetti, Silvia [1 ]
Riera, Alberto [1 ]
Speck, Christian [1 ]
机构
[1] Univ London Imperial Coll Sci Technol & Med, Inst Clin Sci, DNA Replicat Grp, London W12 0NN, England
关键词
DNA-POLYMERASE-ALPHA; SINGLE-STRANDED-DNA; CDK-DEPENDENT PHOSPHORYLATION; PROTEIN PHOSPHATASE 1; S-PHASE; CELL-CYCLE; ORC/CDC6/MCM2-7; COMPLEX; PREINITIATION COMPLEX; STRUCTURAL BASIS; KINASE-ACTIVITY;
D O I
10.1007/s00412-014-0489-2
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A crucial step during eukaryotic initiation of DNA replication is the correct loading and activation of the replicative DNA helicase, which ensures that each replication origin fires only once. Unregulated DNA helicase loading and activation, as it occurs in cancer, can cause severe DNA damage and genomic instability. The essential mini-chromosome maintenance proteins 2-7 (MCM2-7) represent the core of the eukaryotic replicative helicase that is loaded at DNA replication origins during G1-phase of the cell cycle. The MCM2-7 helicase activity, however, is only triggered during S-phase once the holo-helicase Cdc45-MCM2-7-GINS (CMG) has been formed. A large number of factors and several kinases interact and contribute to CMG formation and helicase activation, though the exact mechanisms remain unclear. Crucially, upon DNA damage, this reaction is temporarily halted to ensure genome integrity. Here, we review the current understanding of helicase activation; we focus on protein interactions during CMG formation, discuss structural changes during helicase activation, and outline similarities and differences of the prokaryotic and eukaryotic helicase activation process.
引用
收藏
页码:13 / 26
页数:14
相关论文
共 148 条
[91]   SpS1d3 is required for loading and maintenance of SpCdc45 on chromatin in DNA replication in fission yeast [J].
Nakajima, R ;
Masukata, H .
MOLECULAR BIOLOGY OF THE CELL, 2002, 13 (05) :1462-1472
[92]   Kinetochores Coordinate Pericentromeric Cohesion and Early DNA Replication by Cdc7-Dbf4 Kinase Recruitment [J].
Natsume, Toyoaki ;
Mueller, Carolin A. ;
Katou, Yuki ;
Retkute, Renata ;
Gierlinski, Marek ;
Araki, Hiroyuki ;
Blow, J. Julian ;
Shirahige, Katsuhiko ;
Nieduszynski, Conrad A. ;
Tanaka, Tomoyuki U. .
MOLECULAR CELL, 2013, 50 (05) :661-674
[93]   Cyclin-dependent kinases prevent DNA re-replication through multiple mechanisms [J].
Nguyen, VQ ;
Co, C ;
Li, JJ .
NATURE, 2001, 411 (6841) :1068-1073
[94]   CDK phosphorylation of Drc1 regulates DNA replication in fission yeast [J].
Noguchi, E ;
Shanahan, P ;
Noguchi, C ;
Russell, P .
CURRENT BIOLOGY, 2002, 12 (07) :599-605
[95]   Prereplicative complexes assembled in vitro support origin-dependent and independent DNA replication [J].
On, Kin Fan ;
Beuron, Fabienne ;
Frith, David ;
Snijders, Ambrosius P. ;
Morris, Edward P. ;
Diffley, John F. X. .
EMBO JOURNAL, 2014, 33 (06) :605-620
[96]  
Oshiro G, 1999, MOL CELL BIOL, V19, P4888
[97]   Separate SCFCDC4 recognition elements target Cdc6 for proteolysis in S phase and mitosis [J].
Perkins, G ;
Drury, LS ;
Diffley, JFX .
EMBO JOURNAL, 2001, 20 (17) :4836-4845
[98]   The anaphase promoting complex/cyclosome: a machine designed to destroy [J].
Peters, Jan-Michael .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2006, 7 (09) :644-656
[99]   Dbf4 and Cdc7 Proteins Promote DNA Replication through Interactions with Distinct Mcm2-7 Protein Subunits [J].
Ramer, Matthew D. ;
Suman, Evelyin S. ;
Richter, Hagen ;
Stanger, Karen ;
Spranger, Martina ;
Bieberstein, Nicole ;
Duncker, Bernard P. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2013, 288 (21) :14926-14935
[100]   Sequential ATP hydrolysis by Cdc6 and ORC directs loading of the Mcm2-7 helicase [J].
Randell, JCW ;
Bowers, JL ;
Rodríguez, HK ;
Bell, SP .
MOLECULAR CELL, 2006, 21 (01) :29-39