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Journal Abstract Search


206 related items for PubMed ID: 27836908

  • 1. Dissecting Gene Expression Changes Accompanying a Ploidy-Based Phenotypic Switch.
    Cromie GA, Tan Z, Hays M, Jeffery EW, Dudley AM.
    G3 (Bethesda); 2017 Jan 05; 7(1):233-246. PubMed ID: 27836908
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  • 2. Aneuploid proliferation defects in yeast are not driven by copy number changes of a few dosage-sensitive genes.
    Bonney ME, Moriya H, Amon A.
    Genes Dev; 2015 May 01; 29(9):898-903. PubMed ID: 25934502
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  • 4. Aneuploidy underlies a multicellular phenotypic switch.
    Tan Z, Hays M, Cromie GA, Jeffery EW, Scott AC, Ahyong V, Sirr A, Skupin A, Dudley AM.
    Proc Natl Acad Sci U S A; 2013 Jul 23; 110(30):12367-72. PubMed ID: 23812752
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  • 7. Loss of the SUMO protease Ulp2 triggers a specific multichromosome aneuploidy.
    Ryu HY, Wilson NR, Mehta S, Hwang SS, Hochstrasser M.
    Genes Dev; 2016 Aug 15; 30(16):1881-94. PubMed ID: 27585592
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  • 8. Effects of aneuploidy on cellular physiology and cell division in haploid yeast.
    Torres EM, Sokolsky T, Tucker CM, Chan LY, Boselli M, Dunham MJ, Amon A.
    Science; 2007 Aug 17; 317(5840):916-24. PubMed ID: 17702937
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  • 9. The Stress-Inducible Peroxidase TSA2 Underlies a Conditionally Beneficial Chromosomal Duplication in Saccharomyces cerevisiae.
    Linder RA, Greco JP, Seidl F, Matsui T, Ehrenreich IM.
    G3 (Bethesda); 2017 Sep 07; 7(9):3177-3184. PubMed ID: 28743806
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  • 10. Karyotypic determinants of chromosome instability in aneuploid budding yeast.
    Zhu J, Pavelka N, Bradford WD, Rancati G, Li R.
    PLoS Genet; 2012 Sep 07; 8(5):e1002719. PubMed ID: 22615582
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  • 13. Genome-wide construction of a series of designed segmental aneuploids in Saccharomyces cerevisiae.
    Natesuntorn W, Iwami K, Matsubara Y, Sasano Y, Sugiyama M, Kaneko Y, Harashima S.
    Sci Rep; 2015 Jul 30; 5():12510. PubMed ID: 26224198
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  • 14. Overdosage of Balanced Protein Complexes Reduces Proliferation Rate in Aneuploid Cells.
    Chen Y, Chen S, Li K, Zhang Y, Huang X, Li T, Wu S, Wang Y, Carey LB, Qian W.
    Cell Syst; 2019 Aug 28; 9(2):129-142.e5. PubMed ID: 31351919
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  • 16. A strategy for constructing aneuploid yeast strains by transient nondisjunction of a target chromosome.
    Anders KR, Kudrna JR, Keller KE, Kinghorn B, Miller EM, Pauw D, Peck AT, Shellooe CE, Strong IJ.
    BMC Genet; 2009 Jul 13; 10():36. PubMed ID: 19594932
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  • 17. Further support for aneuploidy tolerance in wild yeast and effects of dosage compensation on gene copy-number evolution.
    Gasch AP, Hose J, Newton MA, Sardi M, Yong M, Wang Z.
    Elife; 2016 Mar 07; 5():e14409. PubMed ID: 26949252
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  • 18. Aneuploidy confers quantitative proteome changes and phenotypic variation in budding yeast.
    Pavelka N, Rancati G, Zhu J, Bradford WD, Saraf A, Florens L, Sanderson BW, Hattem GL, Li R.
    Nature; 2010 Nov 11; 468(7321):321-5. PubMed ID: 20962780
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  • 19. Large-scale genome reorganization in Saccharomyces cerevisiae through combinatorial loss of mini-chromosomes.
    Ueda Y, Ikushima S, Sugiyama M, Matoba R, Kaneko Y, Matsubara K, Harashima S.
    J Biosci Bioeng; 2012 Jun 11; 113(6):675-82. PubMed ID: 22382015
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  • 20. Hsp90 stress potentiates rapid cellular adaptation through induction of aneuploidy.
    Chen G, Bradford WD, Seidel CW, Li R.
    Nature; 2012 Jan 29; 482(7384):246-50. PubMed ID: 22286062
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