Jeffrey M. Buis, Ph.D.

Affiliations: 
Michigan State University, East Lansing, MI 
Area:
Bioinorganic Chemistry; Mechanisms of Metalloenzyme-mediated Reactions; Mechanisms of Biological Radical Reactions; Bioremediation
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"Jeffrey Buis"
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Joan Blanchette Broderick grad student 2006 Michigan State
 (Spore photoproduct lyase: Investigations of a radical DNA repair enzyme.)
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Publications

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Spehalski E, Capper KM, Smith CJ, et al. (2017) MRE11 promotes tumorigenesis by facilitating resistance to oncogene-induced replication stress. Cancer Research
Morgan MJ, Festerling TA, Buis J, et al. (2017) Abstract 2489: Mre11-CDK2 interaction during the DNA double-strand break response Cancer Research. 77: 2489-2489
Buis J, Goodman T, Kim J, et al. (2016) Quantitation of DNA methylation and copy number variations by targeted sequencing of retrotransposon. Journal of Clinical Oncology. 34
Hartlerode AJ, Morgan MJ, Wu Y, et al. (2015) Recruitment and activation of the ATM kinase in the absence of DNA-damage sensors. Nature Structural & Molecular Biology
Regal JA, Festerling TA, Buis JM, et al. (2013) Disease-associated MRE11 mutants impact ATM/ATR DNA damage signaling by distinct mechanisms. Human Molecular Genetics. 22: 5146-59
Buis J, Stoneham T, Spehalski E, et al. (2012) Mre11 regulates CtIP-dependent double-strand break repair by interaction with CDK2. Nature Structural & Molecular Biology. 19: 246-52
Dinkelmann M, Spehalski E, Stoneham T, et al. (2009) Multiple functions of MRN in end-joining pathways during isotype class switching. Nature Structural & Molecular Biology. 16: 808-13
Buis J, Wu Y, Deng Y, et al. (2008) Mre11 nuclease activity has essential roles in DNA repair and genomic stability distinct from ATM activation. Cell. 135: 85-96
Buis JM, Cheek J, Kalliri E, et al. (2006) Characterization of an active spore photoproduct lyase, a DNA repair enzyme in the radical S-adenosylmethionine superfamily. The Journal of Biological Chemistry. 281: 25994-6003
Buis JM, Broderick JB. (2005) Pyruvate formate-lyase activating enzyme: elucidation of a novel mechanism for glycyl radical formation. Archives of Biochemistry and Biophysics. 433: 288-96
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