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Bruce Futcher

Affiliations: 
Molecular and Cellular Biology Stony Brook University, Stony Brook, NY, United States 
Area:
Molecular Biology
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"Bruce Futcher"

Children

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Lucas Carey grad student 2010 SUNY Stony Brook
Mike Tyers post-doc 1989-1992 CSHL
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Publications

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Chen Y, Zhao G, Zahumensky J, et al. (2020) Differential Scaling of Gene Expression with Cell Size May Explain Size Control in Budding Yeast. Molecular Cell
Mukherjee K, Futcher B, Leatherwood J. (2018) and mRNAs are novel RNA targets of the Mei2 RNA-binding protein during early meiosis in . Open Biology. 8
Zhao G, Chen Y, Carey L, et al. (2016) Cyclin-Dependent Kinase Co-Ordinates Carbohydrate Metabolism and Cell Cycle in S. cerevisiae. Molecular Cell. 62: 546-557
Gao S, Honey S, Futcher B, et al. (2016) The non-homologous end-joining pathway of S. cerevisiae works effectively in G1-phase cells, and religates cognate ends correctly and non-randomly. Dna Repair. 42: 1-10
Garg A, Futcher B, Leatherwood J. (2015) A new transcription factor for mitosis: in Schizosaccharomyces pombe, the RFX transcription factor Sak1 works with forkhead factors to regulate mitotic expression. Nucleic Acids Research
Shen SH, Stauft CB, Gorbatsevych O, et al. (2015) Large-scale recoding of an arbovirus genome to rebalance its insect versus mammalian preference. Proceedings of the National Academy of Sciences of the United States of America. 112: 4749-54
Cai Y, Futcher B. (2013) Effects of the yeast RNA-binding protein Whi3 on the half-life and abundance of CLN3 mRNA and other targets. Plos One. 8: e84630
Berchowitz LE, Gajadhar AS, van Werven FJ, et al. (2013) A developmentally regulated translational control pathway establishes the meiotic chromosome segregation pattern. Genes & Development. 27: 2147-63
Chen HM, Rosebrock AP, Khan SR, et al. (2012) Repression of meiotic genes by antisense transcription and by Fkh2 transcription factor in Schizosaccharomyces pombe. Plos One. 7: e29917
Chen HM, Futcher B, Leatherwood J. (2011) The fission yeast RNA binding protein Mmi1 regulates meiotic genes by controlling intron specific splicing and polyadenylation coupled RNA turnover. Plos One. 6: e26804
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