Genome-wide map of Apn1 binding sites under oxidative stress in Saccharomyces cerevisiae

Author:

Morris Lydia P.123ORCID,Conley Andrew B.45,Degtyareva Natalya2,Jordan I. King4,Doetsch Paul W.1267

Affiliation:

1. Program in Genetics and Molecular Biology; Emory University Atlanta; GA 30322 USA

2. Department of Biochemistry; Emory University Atlanta; GA 30322 USA

3. WebbWrites, LLC; Durham NC USA

4. School of Biology; Georgia Institute of Technology Atlanta; GA 30332 USA

5. Cedars-Sinai Medical Center; Los Angeles CA USA

6. Department of Hematology and Medical Oncology; Emory University Atlanta; GA 30322 USA

7. Winship Cancer Institute; Emory University Atlanta; GA 30322 USA

Funder

NCI Cancer Center Support Grant

Alfred P. Sloan Research Fellowship in Computational and Evolutionary Molecular Biology

Georgia Institute of Technology School of Biology

National Institute of Environmental Health Sciences

Publisher

Wiley

Subject

Genetics,Applied Microbiology and Biotechnology,Biochemistry,Bioengineering,Biotechnology

Reference54 articles.

1. Affymetrix Chromatin Immunoprecipitation Assay Protocol 2017 tools.thermofisher.com/content/sfs/manuals/chromatin_immun_ChIP.pdf

2. The NOX family of ROS-generating NADPH oxidases: physiology and pathophysiology;Bedard;Physiol Rev,2007

3. The Saccharomyces cerevisiae ETH1 gene, an inducible homolog of exonuclease III that provides resistance to DNA-damaging agents and limits spontaneous mutagenesis;Bennett;Mol Cell Biol,1999

4. Mutagenicity, toxicity and repair of DNA base damage induced by oxidation;Bjelland;Mutat Res Fund Mol Mech Mut,2003

5. Assessing biomarkers of oxidative stress: analysis of guanosine and oxidized guanosine nucleotide triphosphates by high performance liquid chromatography with electrochemical detection;Bolin;Biomed Applic,2007

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