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Genetics|November 25, 2024
On the rate of aneuploidy reversion in a wild yeast modelJames Hose, Qi Zheng, Nathaniel P Sharp, et al.Genetics|March 18, 2021
Genetic variation in aneuploidy prevalence and tolerance across Saccharomyces cerevisiae lineagesEduardo F C Scopel, James Hose, Douda Bensasson, et al.Elife|August 2, 2021
Natural variation in the consequences of gene overexpression and its implications for evolutionary trajectoriesDeElegant Robinson, Michael Place, James Hose, et al.Plos Genetics|October 25, 2024
The response to single-gene duplication implicates translation as a key vulnerability in aneuploid yeastH Auguste Dutcher, James Hose, Hollis Howe, et al.Biorxiv : the Preprint Server for Biology|April 25, 2024
The response to single-gene duplication implicates translation as a key vulnerability in aneuploid yeastH Auguste Dutcher, James Hose, Hollis Howe, et al.Current Biology : CB|August 7, 2018
Decoupling Yeast Cell Division and Stress Defense Implicates mRNA Repression in Translational Reallocation during StressYi-Hsuan Ho, Evgenia Shishkova, James Hose, et al.Elife|March 8, 2016
Further support for aneuploidy tolerance in wild yeast and effects of dosage compensation on gene copy-number evolutionAudrey P Gasch, James Hose, Michael A Newton, et al.G3 (Bethesda, Md.)|July 22, 2023
Gene-by-environment interactions influence the fitness cost of gene copy-number variation in yeastDeElegant Robinson, Elena Vanacloig-Pedros, Ruoyi Cai, et al.Biorxiv : the Preprint Server for Biology|July 28, 2023
Gene-by-environment interactions influence the fitness cost of gene copy-number variation in yeastDeElegant Robinson, Elena Vanacloig-Pedros, Ruoyi Cai, et al.Biorxiv : the Preprint Server for Biology|July 1, 2024
Premature aging in aneuploid yeast is caused in part by aneuploidy-induced defects in Ribosome Quality ControlLeah E Escalante, James Hose, Hollis Howe, et al.Pageof 3