John F. McDonald

Affiliations: 
Georgia Institute of Technology, Atlanta, GA 
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"John McDonald"
Cross-listing: FlyTree

Parents

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Francisco José Ayala grad student UC Davis (FlyTree)

Children

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Amy Csink grad student University of Georgia (FlyTree)
Andrew D Huang grad student Georgia Tech (FlyTree)
I. King Jordan grad student 1995-1998 University of Georgia (FlyTree)
Nathan J Bowen grad student 1996-2000 University of Georgia (FlyTree)
Nalini Polavarapu grad student 2007 Georgia Tech (FlyTree)
Shubin W. Shahab grad student 2011 Georgia Tech (FlyTree)
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Publications

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Lee KK, Norris ET, Rishishwar L, et al. (2023) Ethnic disparities in mortality and group-specific risk factors in the UK Biobank. Plos Global Public Health. 3: e0001560
Jordan IK, Lee KK, McDonald JF, et al. (2022) Epigenetics and cancer disparities: when nature might be nurture. Oncoscience. 9: 23-24
Lee KK, Rishishwar L, Ban D, et al. (2022) Association of genetic ancestry and molecular signatures with cancer survival disparities: a pan-cancer analysis. Cancer Research
Zhang M, Wang Y, Matyunina LV, et al. (2020) The ability of miRNAs to induce mesenchymal-to-epithelial transition (MET) in cancer cells is highly dependent upon genetic background. Cancer Letters
Clayton EA, Rishishwar L, Huang TC, et al. (2020) An atlas of transposable element-derived alternative splicing in cancer. Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences. 375: 20190342
Clayton EA, Khalid S, Ban D, et al. (2020) Tumor suppressor genes and allele-specific expression: mechanisms and significance. Oncotarget. 11: 462-479
Dias ECL, Paim LR, Matos-Souza JR, et al. (2019) Bioinformatic analysis of circulating miRNAs related to cancer following spinal cord injury. Bioscience Reports
Zhang M, Jabbari N, Satpathy M, et al. (2019) Sequence diverse miRNAs converge to induce mesenchymal-to-epithelial transition in ovarian cancer cells through direct and indirect regulatory controls. Cancer Letters
Elliott B, Millena AC, Matyunina L, et al. (2019) Essential role of JunD in cell proliferation is mediated via MYC signaling in prostate cancer cells. Cancer Letters
Thompson B, Millena AC, Matyunina L, et al. (2019) Abstract 4306: JunD-induced cell proliferation requires MYC signaling in prostate cancer cells Cancer Research
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