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  • Author: Uchida H
  • References

Author: Uchida H


References 10 references


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  • Kamata K, et al. (2016) Four domains of Ada1 form a heterochromatin boundary through different mechanisms. Genes Cells 21(10):1125-1136 PMID:27647735
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    • PubMed
  • Mitsumori R, et al. (2016) Gic1 is a novel heterochromatin boundary protein in vivo. Genes Genet Syst 91(3):151-159 PMID:27301280
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  • Mitsumori R, et al. (2016) Analysis of novel Sir3 binding regions in Saccharomyces cerevisiae. J Biochem 160(1):11-7 PMID:26957548
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  • Uchida H, et al. (2015) Isolation and characterization of two squalene epoxidase genes from Botryococcus braunii, race B. PLoS One 10(4):e0122649 PMID:25830359
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  • Kamata K, et al. (2014) The N-terminus and Tudor domains of Sgf29 are important for its heterochromatin boundary formation function. J Biochem 155(3):159-71 PMID:24307402
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  • Kamata K, et al. (2013) C-terminus of the Sgf73 subunit of SAGA and SLIK is important for retention in the larger complex and for heterochromatin boundary function. Genes Cells 18(9):823-37 PMID:23819448
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  • Mano Y, et al. (2013) Single cell visualization of yeast gene expression shows correlation of epigenetic switching between multiple heterochromatic regions through multiple generations. PLoS Biol 11(7):e1001601 PMID:23843746
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  • Katayama T, et al. (2012) Involvement of protein kinase C in the suppression of apoptosis and in polarity establishment in Aspergillus nidulans under conditions of heat stress. PLoS One 7(11):e50503 PMID:23209763
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  • Hatanaka A, et al. (2011) Fub1p, a novel protein isolated by boundary screening, binds the proteasome complex. Genes Genet Syst 86(5):305-14 PMID:22362029
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  • Oki M, et al. (2007) Identification of novel suppressors for Mog1 implies its involvement in RNA metabolism, lipid metabolism and signal transduction. Gene 400(1-2):114-21 PMID:17651922
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