A snapshot of Snf2 enzymes in fission yeast
Author:
Affiliation:
1. Department of Biosciences and Nutrition, Center for Biosciences, NOVUM, Karolinska Institutet, S-141 83 Huddinge, Sweden.
Abstract
Publisher
Portland Press Ltd.
Subject
Biochemistry
Link
https://portlandpress.com/biochemsoctrans/article-pdf/41/6/1640/434118/bst0411640.pdf
Reference50 articles.
1. Identification of multiple distinct Snf2 subfamilies with conserved structural motifs;Flaus;Nucleic Acids Res.,2006
2. Essential roles of Snf21, a Swi2/Snf2 family chromatin remodeler, in fission yeast mitosis;Yamada;Genes Genet. Syst.,2008
3. Roles of histone acetylation and chromatin remodeling factor in a meiotic recombination hotspot;Yamada;EMBO J.,2004
4. Isolation of a novel complex of the SWI/SNF family from Schizosaccharomyces pombe and its effects on in vitro transcription in nucleosome arrays;Bernal;Mol. Cell. Biochem.,2007
5. Fission yeast SWI/SNF and RSC complexes show compositional and functional differences from budding yeast;Monahan;Nat. Struct. Mol. Biol.,2008
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1. Rrp1, Rrp2 and Uls1 – Yeast SWI2/SNF2 DNA dependent translocases in genome stability maintenance;DNA Repair;2022-08
2. Rrp1 translocase and ubiquitin ligase activities restrict the genome destabilising effects of Rad51 in fission yeast;Nucleic Acids Research;2021-06-22
3. Rrp1 translocase and ubiquitin ligase activities restrict the genome destabilising effects of Rad51 in fission yeast;2020-05-31
4. S. pombe DNA translocases Rrp1 and Rrp2 have distinct roles at centromeres and telomeres that ensure genome stability;2019-08-16
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