Rif1 is a global regulator of timing of replication origin firing in fission yeast

被引:192
作者
Hayano, Motoshi [1 ]
Kanoh, Yutaka [1 ]
Matsumoto, Seiji [1 ]
Renard-Guillet, Claire [2 ]
Shirahige, Katsuhiko [2 ]
Masai, Hisao [1 ]
机构
[1] Tokyo Metropolitan Inst Med Sci, Dept Genome Med, Setagaya Ku, Tokyo 1568613, Japan
[2] Univ Tokyo, Lab Genome Struct & Funct, Res Ctr Epigenet Dis, Inst Mol & Cellular Biosci,Bunkyo Ku, Tokyo 1130032, Japan
关键词
replication origin; replication timing; late-firing origin; Cdc7; kinase; telomere-binding protein; ChIP-chip assay; DNA-REPLICATION; SACCHAROMYCES-CEREVISIAE; TELOMERE LENGTH; S-PHASE; SCHIZOSACCHAROMYCES-POMBE; SEQUENTIAL ACTION; PROTEIN; KINASE; INITIATION; COMPLEX;
D O I
10.1101/gad.178491.111
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
One of the long-standing questions in eukaryotic DNA replication is the mechanisms that determine where and when a particular segment of the genome is replicated. Cdc7/Hsk1 is a conserved kinase required for initiation of DNA replication and may affect the site selection and timing of origin firing. We identified rif1 Delta, a null mutant of rif1(+), a conserved telomere-binding factor, as an efficient bypass mutant of fission yeast hsk1. Extensive deregulation of dormant origins over a wide range of the chromosomes occurs in rif1 Delta in the presence or absence of hydroxyurea (HU). At the same time, many early-firing, efficient origins are suppressed or delayed in firing timing in rif1 Delta. Rif1 binds not only to telomeres, but also to many specific locations on the arm segments that only partially overlap with the prereplicative complex assembly sites, although Rif1 tends to bind in the vicinity of the late/dormant origins activated in rif1 Delta. The binding to the arm segments occurs through M to G1 phase in a manner independent of Taz1 and appears to be essential for the replication timing program during the normal cell cycle. Our data demonstrate that Rif1 is a critical determinant of the origin activation program on the fission yeast chromosomes.
引用
收藏
页码:137 / 150
页数:14
相关论文
共 48 条
[1]   Replication in context: dynamic regulation of DNA replication patterns in metazoans [J].
Aladjem, Mirit I. .
NATURE REVIEWS GENETICS, 2007, 8 (08) :588-600
[2]   The Rpd3-Sin3 histone deacetylase regulates replication timing and enables intra-S origin control in Saccharomyces cerevisiae [J].
Aparicio, JG ;
Viggiani, CJ ;
Gibson, DG ;
Aparicio, OM .
MOLECULAR AND CELLULAR BIOLOGY, 2004, 24 (11) :4769-4780
[3]   MEME SUITE: tools for motif discovery and searching [J].
Bailey, Timothy L. ;
Boden, Mikael ;
Buske, Fabian A. ;
Frith, Martin ;
Grant, Charles E. ;
Clementi, Luca ;
Ren, Jingyuan ;
Li, Wilfred W. ;
Noble, William S. .
NUCLEIC ACIDS RESEARCH, 2009, 37 :W202-W208
[4]   Transcription and RNAi in heterochromatic gene silencing [J].
Buehler, Marc ;
Moazed, Danesh .
NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2007, 14 (11) :1041-1048
[5]   Regulation of telomere length and function by a Myb-domain protein in fission yeast [J].
Cooper, JP ;
Nimmo, ER ;
Allshire, RC ;
Cech, TR .
NATURE, 1997, 385 (6618) :744-747
[6]   Ku complex controls the replication time of DNA in telomere regions [J].
Cosgrove, AJ ;
Nieduszynski, CA ;
Donaldson, AD .
GENES & DEVELOPMENT, 2002, 16 (19) :2485-2490
[7]   The spatial position and replication timing of chromosomal domains are both established in early G1 phase [J].
Dimitrova, DS ;
Gilbert, DM .
MOLECULAR CELL, 1999, 4 (06) :983-993
[8]   rMAT - an R/Bioconductor package for analyzing ChIP-chip experiments [J].
Droit, Arnaud ;
Cheung, Charles ;
Gottardo, Raphael .
BIOINFORMATICS, 2010, 26 (05) :678-679
[9]   A RAP1-INTERACTING PROTEIN INVOLVED IN TRANSCRIPTIONAL SILENCING AND TELOMERE LENGTH REGULATION [J].
HARDY, CFJ ;
SUSSEL, L ;
SHORE, D .
GENES & DEVELOPMENT, 1992, 6 (05) :801-814
[10]   Mrc1 Marks Early-Firing Origins and Coordinates Timing and Efficiency of Initiation in Fission Yeast [J].
Hayano, Motoshi ;
Kanoh, Yutaka ;
Matsumoto, Seiji ;
Masai, Hisao .
MOLECULAR AND CELLULAR BIOLOGY, 2011, 31 (12) :2380-2391