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  • Author: Horiuchi T
  • References

Author: Horiuchi T


References 18 references


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  • Watanabe T, et al. (2018) Complex repeat structure promotes hyper-amplification and amplicon evolution through rolling-circle replication. Nucleic Acids Res 46(10):5097-5108 PMID:29718479
    • SGD Paper
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  • Shiwa Y, et al. (2012) Whole-Genome Profiling of a Novel Mutagenesis Technique Using Proofreading-Deficient DNA Polymerase δ. Int J Evol Biol 2012:860797 PMID:22675654
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  • Okamoto H, et al. (2011) Double rolling circle replication (DRCR) is recombinogenic. Genes Cells 16(5):503-13 PMID:21501343
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  • Johzuka K and Horiuchi T (2009) The cis element and factors required for condensin recruitment to chromosomes. Mol Cell 34(1):26-35 PMID:19362534
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  • Johzuka K and Horiuchi T (2007) RNA polymerase I transcription obstructs condensin association with 35S rRNA coding regions and can cause contraction of long repeat in Saccharomyces cerevisiae. Genes Cells 12(6):759-71 PMID:17573776
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  • Johzuka K, et al. (2006) Condensin loaded onto the replication fork barrier site in the rRNA gene repeats during S phase in a FOB1-dependent fashion to prevent contraction of a long repetitive array in Saccharomyces cerevisiae. Mol Cell Biol 26(6):2226-36 PMID:16507999
    • SGD Paper
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  • Ganley AR, et al. (2005) Identifying gene-independent noncoding functional elements in the yeast ribosomal DNA by phylogenetic footprinting. Proc Natl Acad Sci U S A 102(33):11787-92 PMID:16081534
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  • Watanabe T and Horiuchi T (2005) A novel gene amplification system in yeast based on double rolling-circle replication. EMBO J 24(1):190-8 PMID:15616589
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  • Kobayashi T, et al. (2004) SIR2 regulates recombination between different rDNA repeats, but not recombination within individual rRNA genes in yeast. Cell 117(4):441-53 PMID:15137938
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  • Serizawa N, et al. (2004) Transcription-mediated hyper-recombination in HOT1. Genes Cells 9(4):305-15 PMID:15066122
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  • Takeuchi Y, et al. (2003) Transcription-dependent recombination and the role of fork collision in yeast rDNA. Genes Dev 17(12):1497-506 PMID:12783853
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  • Johzuka K and Horiuchi T (2002) Replication fork block protein, Fob1, acts as an rDNA region specific recombinator in S. cerevisiae. Genes Cells 7(2):99-113 PMID:11895475
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  • Kobayashi T, et al. (2001) [Gene amplification induced by the replication fork barrier site in yeast]. Tanpakushitsu Kakusan Koso 46(8 Suppl):1004-12 PMID:11436287
    • SGD Paper
    • PubMed
  • Kobayashi T, et al. (2001) Identification of DNA cis elements essential for expansion of ribosomal DNA repeats in Saccharomyces cerevisiae. Mol Cell Biol 21(1):136-47 PMID:11113188
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  • Wai H, et al. (2001) Yeast RNA polymerase I enhancer is dispensable for transcription of the chromosomal rRNA gene and cell growth, and its apparent transcription enhancement from ectopic promoters requires Fob1 protein. Mol Cell Biol 21(16):5541-53 PMID:11463836
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  • Kobayashi T, et al. (1998) Expansion and contraction of ribosomal DNA repeats in Saccharomyces cerevisiae: requirement of replication fork blocking (Fob1) protein and the role of RNA polymerase I. Genes Dev 12(24):3821-30 PMID:9869636
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  • Aoyama Y, et al. (1996) Sterol 14-demethylase P450 (P45014DM*) is one of the most ancient and conserved P450 species. J Biochem 119(5):926-33 PMID:8797093
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  • Kobayashi T and Horiuchi T (1996) A yeast gene product, Fob1 protein, required for both replication fork blocking and recombinational hotspot activities. Genes Cells 1(5):465-74 PMID:9078378
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