Scott G. Holmes

Affiliations: 
Wesleyan University, Middletown, CT, United States 
Area:
Molecular Biology, Biochemistry
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"Scott Holmes"
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Children

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Mirela Matecic grad student 2004 Wesleyan
Kristen A. Martins-Taylor grad student 2007 Wesleyan
Asmitha G. Lazarus grad student 2010 Wesleyan
Tina Motwani grad student 2012 Wesleyan
Upasna Sharma grad student 2012 Wesleyan
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Publications

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Rogers AM, Neri NR, Chigweshe L, et al. (2024) Histone Variant H2A.Z and Linker Histone H1 Influence Chromosome Condensation in Saccharomyces cerevisiae. Genetics
Chigweshe L, MacQueen AJ, Holmes SG. (2022) Histone variant H2A.Z promotes meiotic chromosome axis organization in Saccharomyces cerevisiae. G3 (Bethesda, Md.)
Chigweshe L, MacQueen A, Holmes S. (2020) ‐The Influence of Histone Variant H2A.Z and Linker Histone H1 on Saccharomyces cerevisiae Meiosis The Faseb Journal. 34: 1-1
Ringel AE, Ryznar R, Picariello H, et al. (2013) Yeast Tdh3 (glyceraldehyde 3-phosphate dehydrogenase) is a Sir2-interacting factor that regulates transcriptional silencing and rDNA recombination. Plos Genetics. 9: e1003871
Sharma U, Stefanova D, Holmes SG. (2013) Histone variant H2A.Z functions in sister chromatid cohesion in Saccharomyces cerevisiae. Molecular and Cellular Biology. 33: 3473-81
Juuri E, Jussila M, Seidel K, et al. (2013) Sox2 marks epithelial competence to generate teeth in mammals and reptiles. Development (Cambridge, England). 140: 1424-32
Motwani T, Poddar M, Holmes SG. (2012) Sir3 and epigenetic inheritance of silent chromatin in Saccharomyces cerevisiae. Molecular and Cellular Biology. 32: 2784-93
Lazarus AG, Holmes SG. (2011) A cis-acting tRNA gene imposes the cell cycle progression requirement for establishing silencing at the HMR locus in yeast. Genetics. 187: 425-39
Martins-Taylor K, Sharma U, Rozario T, et al. (2011) H2A.Z (Htz1) controls the cell-cycle-dependent establishment of transcriptional silencing at Saccharomyces cerevisiae telomeres. Genetics. 187: 89-104
Motwani T, Doris R, Holmes SG, et al. (2010) Ccq1p and the condensin proteins Cut3p and Cut14p prevent telomere entanglements in the fission yeast Schizosaccharomyces pombe. Eukaryotic Cell. 9: 1612-21
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