Literature DB >> 19917723

Alternative mechanisms for coordinating polymerase alpha and MCM helicase.

Chanmi Lee1, Ivan Liachko, Roxane Bouten, Zvi Kelman, Bik K Tye.   

Abstract

Functional coordination between DNA replication helicases and DNA polymerases at replication forks, achieved through physical linkages, has been demonstrated in prokaryotes but not in eukaryotes. In Saccharomyces cerevisiae, we showed that mutations that compromise the activity of the MCM helicase enhance the physical stability of DNA polymerase alpha in the absence of their presumed linker, Mcm10. Mcm10 is an essential DNA replication protein implicated in the stable assembly of the replisome by virtue of its interaction with the MCM2-7 helicase and Polalpha. Dominant mcm2 suppressors of mcm10 mutants restore viability by restoring the stability of Polalpha without restoring the stability of Mcm10, in a Mec1-dependent manner. In this process, the single-stranded DNA accumulation observed in the mcm10 mutant is suppressed. The activities of key checkpoint regulators known to be important for replication fork stabilization contribute to the efficiency of suppression. These results suggest that Mcm10 plays two important roles as a linker of the MCM helicase and Polalpha at the elongating replication fork--first, to coordinate the activities of these two molecular motors, and second, to ensure their physical stability and the integrity of the replication fork.

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Year:  2009        PMID: 19917723      PMCID: PMC2798462          DOI: 10.1128/MCB.01240-09

Source DB:  PubMed          Journal:  Mol Cell Biol        ISSN: 0270-7306            Impact factor:   4.272


  42 in total

1.  DNA polymerase stabilization at stalled replication forks requires Mec1 and the RecQ helicase Sgs1.

Authors:  Jennifer A Cobb; Lotte Bjergbaek; Kenji Shimada; Christian Frei; Susan M Gasser
Journal:  EMBO J       Date:  2003-08-15       Impact factor: 11.598

2.  Mapping of replication initiation sites in mammalian genomes by two-dimensional gel analysis: stabilization and enrichment of replication intermediates by isolation on the nuclear matrix.

Authors:  P A Dijkwel; J P Vaughn; J L Hamlin
Journal:  Mol Cell Biol       Date:  1991-08       Impact factor: 4.272

3.  Functional uncoupling of MCM helicase and DNA polymerase activities activates the ATR-dependent checkpoint.

Authors:  Tony S Byun; Marcin Pacek; Muh-ching Yee; Johannes C Walter; Karlene A Cimprich
Journal:  Genes Dev       Date:  2005-04-15       Impact factor: 11.361

4.  Mapping replication origins, pause sites, and termini by neutral/alkaline two-dimensional gel electrophoresis.

Authors:  J A Huberman
Journal:  Methods       Date:  1997-11       Impact factor: 3.608

5.  Rapid DNA preparation for 2D gel analysis of replication intermediates.

Authors:  J R Wu; D M Gilbert
Journal:  Nucleic Acids Res       Date:  1995-10-11       Impact factor: 16.971

6.  A lesion in the DNA replication initiation factor Mcm10 induces pausing of elongation forks through chromosomal replication origins in Saccharomyces cerevisiae.

Authors:  A M Merchant; Y Kawasaki; Y Chen; M Lei; B K Tye
Journal:  Mol Cell Biol       Date:  1997-06       Impact factor: 4.272

7.  The 3' to 5' exonuclease activity of Mre 11 facilitates repair of DNA double-strand breaks.

Authors:  T T Paull; M Gellert
Journal:  Mol Cell       Date:  1998-06       Impact factor: 17.970

Review 8.  Eukaryotic DNA polymerases in DNA replication and DNA repair.

Authors:  P M Burgers
Journal:  Chromosoma       Date:  1998-09       Impact factor: 4.316

9.  Recovery from DNA replicational stress is the essential function of the S-phase checkpoint pathway.

Authors:  B A Desany; A A Alcasabas; J B Bachant; S J Elledge
Journal:  Genes Dev       Date:  1998-09-15       Impact factor: 11.361

10.  DNA end resection, homologous recombination and DNA damage checkpoint activation require CDK1.

Authors:  Grzegorz Ira; Achille Pellicioli; Alitukiriza Balijja; Xuan Wang; Simona Fiorani; Walter Carotenuto; Giordano Liberi; Debra Bressan; Lihong Wan; Nancy M Hollingsworth; James E Haber; Marco Foiani
Journal:  Nature       Date:  2004-10-21       Impact factor: 49.962

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  25 in total

1.  Mcm10 associates with the loaded DNA helicase at replication origins and defines a novel step in its activation.

Authors:  Frederick van Deursen; Sugopa Sengupta; Giacomo De Piccoli; Alberto Sanchez-Diaz; Karim Labib
Journal:  EMBO J       Date:  2012-03-20       Impact factor: 11.598

2.  Mcm10 plays an essential role in origin DNA unwinding after loading of the CMG components.

Authors:  Mai Kanke; Yukako Kodama; Tatsuro S Takahashi; Takuro Nakagawa; Hisao Masukata
Journal:  EMBO J       Date:  2012-03-20       Impact factor: 11.598

3.  Solution NMR structure of the C-terminal DNA binding domain of Mcm10 reveals a conserved MCM motif.

Authors:  Patrick D Robertson; Benjamin Chagot; Walter J Chazin; Brandt F Eichman
Journal:  J Biol Chem       Date:  2010-05-19       Impact factor: 5.157

4.  The interaction networks of the budding yeast and human DNA replication-initiation proteins.

Authors:  Rentian Wu; Aftab Amin; Ziyi Wang; Yining Huang; Marco Man-Hei Cheung; Zhiling Yu; Wei Yang; Chun Liang
Journal:  Cell Cycle       Date:  2019-03-19       Impact factor: 4.534

5.  Mcm10 deficiency causes defective-replisome-induced mutagenesis and a dependency on error-free postreplicative repair.

Authors:  Jordan R Becker; Hai Dang Nguyen; Xiaohan Wang; Anja-Katrin Bielinsky
Journal:  Cell Cycle       Date:  2014-03-27       Impact factor: 4.534

6.  Cell-Cycle-Regulated Interaction between Mcm10 and Double Hexameric Mcm2-7 Is Required for Helicase Splitting and Activation during S Phase.

Authors:  Yun Quan; Yisui Xia; Lu Liu; Jiamin Cui; Zhen Li; Qinhong Cao; Xiaojiang S Chen; Judith L Campbell; Huiqiang Lou
Journal:  Cell Rep       Date:  2015-12-10       Impact factor: 9.423

Review 7.  Fine-tuning of the replisome: Mcm10 regulates fork progression and regression.

Authors:  Robert M Brosh; Michael A Trakselis
Journal:  Cell Cycle       Date:  2019-05-05       Impact factor: 4.534

8.  Ubc4 and Not4 regulate steady-state levels of DNA polymerase-α to promote efficient and accurate DNA replication.

Authors:  Justin Haworth; Robert C Alver; Melissa Anderson; Anja-Katrin Bielinsky
Journal:  Mol Biol Cell       Date:  2010-07-21       Impact factor: 4.138

Review 9.  Enigmatic roles of Mcm10 in DNA replication.

Authors:  Yee Mon Thu; Anja-Katrin Bielinsky
Journal:  Trends Biochem Sci       Date:  2013-01-17       Impact factor: 13.807

Review 10.  Structural biology of replication initiation factor Mcm10.

Authors:  Wenyue Du; Melissa E Stauffer; Brandt F Eichman
Journal:  Subcell Biochem       Date:  2012
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