Rif1 promotes association of G-quadruplex (G4) by its specific G4 binding and oligomerization activities

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Hisao Masai
Rino Fukatsu
Naoko Kakusho
Yutaka Kanoh
Kenji Moriyama
Yue Ma
Keisuke Iida
Kazuo Nagasawa
机构
[1] Tokyo Metropolitan Institute of Medical Science,Department of Genome Medicine
[2] Kamikitazawa,Department of Biotechnology and Life Science, Faculty of Technology
[3] Tokyo University of Agriculture and Technology,Molecular Chirality Research Center, Synthetic Organic Chemistry, Department of Chemistry
[4] Graduate School of Science,undefined
[5] Chiba University,undefined
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Rif1 is a conserved protein regulating replication timing and binds preferentially to the vicinity of late-firing/dormant origins in fission yeast. The Rif1 binding sites on the fission yeast genome have an intrinsic potential to generate G-quadruplex (G4) structures to which purified Rif1 preferentially binds. We previously proposed that Rif1 generates chromatin architecture that may determine replication timing by facilitating the chromatin loop formation. Here, we conducted detailed biochemical analyses on Rif1 and its G4 binding. Rif1 prefers sequences containing long stretches of guanines and binds preferentially to the multimeric G4 of parallel or hybrid/mix topology. Rif1 forms oligomers and binds simultaneously to multiple G4. We present a model on how Rif1 may facilitate the formation of chromatin architecture through its G4 binding and oligomerization properties.
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