Publications
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(Full-length articles available upon request)
Buford, M., Lacher, S., Slattery, M., Levings, D.C., Postma, B., Holian, A., & Migliaccio, C. (2024). A mouse model of wildfire smoke-induced health effects: sex differences in acute and sustained effects of inhalation exposures. Inhalation toxicology, 1-11. 08958378.2024.2354398
Levings, D.C., Pathak, S.S, Yang, Y., & Slattery, M. (2023). Limited expression of Nrf2 in neurons across the central nervous system. Redox Biology. j.redox.2023.102830
Myers, R.R., Sanchez-Garcia, J., Levings, D.C., Melvin, R.G., & Fernadez-Funez, P. (2022). New Drosophila models to uncover the intrinsic and extrinsic factors mediating the toxicity of the human prion protein. Disease Models & Mechanisms. dmm.049184
Loganathan, R., Levings, D.C., Kim, J.H., Wells, M.B., Chiu, H., Wu, Y., Slattery, M., & Andrew, D.J. (2022). Ribbon boosts ribosomal protein gene expression to coordinate organ form and function. Journal of Cell Biology. jcb.202110073
Levings, D.C.*, Lacher, S.E.*, Palacios-Moreno, J., & Slattery, M. (2021). Transcriptional reprogramming by oxidative stress occurs within a predefined chromatin accessibility landscape. Free Radical Biology and Medicine, 171, 319-331. j.freeradbiomed.2021.05.016
Johnson, D.M., Wells, M.B., Fox, R., Lee, J.S., Loganathan, R., Levings, D., Bastien, A., Slattery, M., & Andrew, D.J. (2020). CrebA increases secretory capacity through direct transcriptional regulation of the secretory machinery, a subset of secretory cargo, and other key regulators. Traffic, 21(9), 560-577. tra.12753
Levings, D.C., Shaw, K.E., & Lacher, S.E. (2020). Genomic resources for dissecting the role of non-protein coding variation in gene-environment interactions. Toxicology, 441, 152505. j.tox.2020.152505
Levings, D.C.*, Wang, X.*, Kohlhase, D., Bell, D.A., & Slattery, M. (2018). A distinct class of antioxidant response elements is consistently activated in tumors with NRF2 mutations. Redox Biology, 19, 235-249. j.redox.2018.07.026
Lacher, S.E., Levings, D.C., Freeman, S., & Slattery, M. (2018). Identification of a functional antioxidant response element at the HIF1A locus. Redox Biology, 19, 401-411. j.redox.2018.08.014
Levings, D.C. & Nakato, H. (2017). Loss of heparan sulfate in the niche leads to tumor-like germ cell growth in the Drosophila testis. Glycobiology, 28(1), 32-41. glycob.cwx090
Levings, D.C., Arashiro, T., & Nakato, H. (2016). Heparan sulfate regulates the number and centrosome positioning of Drosophila male germline stem cells. Molecular Biology of the Cell, 27(6), 888-896. mbc.E15-07-0528
Lane, J. W., Hukriede, K., Jersett, A., Koirala, D., Levings, D., Stewart, A., & Waxman, M. A. (2012). Synthesis and Characterization of New Biodiesels Derived From Oils of Plants Growing in Northern Wisconsin and Minnesota. Journal of the American Oil Chemists' Society, 89(4), 721-725. s11746-011-1963-0
Dejima, K., Kanai, M.I., Akiyama, T., Levings, D.C., & Nakato, H. (2011). Novel contact-dependent bone morphogenetic protein (BMP) signaling mediated by heparan sulfate proteoglycans. Journal of Biological Chemistry, 286(19), 17103-17111. jbc.M110.208082