Epigenesis, Genetic

Displaying 1 - 26 of 26CSV
Henick, B. S., Taylor, A. M., Nakagawa, H., Wong, K.-K., Diehl, J. A., & Rustgi, A. K. (2025). Squamous cell cancers of the aero-upper digestive tract: A unified perspective on biology, genetics, and therapy. Cancer Cell, 43(2), 178–194. https://doi.org/10.1016/j.ccell.2025.01.003
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Grodstein, F., Lemos, B., Yang, J., de Paiva Lopes, K., Vialle, R. A., Seyfried, N., Wang, Y., Shireby, G., Hannon, E., Thomas, A., Brookes, K., Mill, J., De Jager, P. L., & Bennett, D. A. (2024). Genetic architecture of epigenetic cortical clock age in brain tissue from older individuals: alterations in CD46 and other loci. Epigenetics, 19(1). https://doi.org/10.1080/15592294.2024.2392050
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Zhang, Y., Karagiannis, D., Liu, H., Lin, M., Fang, Y., Jiang, M., Chen, X., Suresh, S., Huang, H., She, J., Shi, F., Liu, J., Luo, D., Angel, J. C., Lin, G., Yang, P., El-Rifai, W., Zaika, A., Oro, A. E., … Que, J. (2024). Epigenetic regulation of p63 blocks squamous-to-neuroendocrine transdifferentiation in esophageal development and malignancy. Science Advances, 10(41). https://doi.org/10.1126/sciadv.adq0479
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Saeki, K., Pan, R., Lee, E., Kurotaki, D., & Ozato, K. (2024). IRF8 defines the epigenetic landscape in postnatal microglia, thereby directing their transcriptome programs. Nature Immunology, 25(10), 1928–1942. https://doi.org/10.1038/s41590-024-01962-2
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Ma, Y., Reyes-Dumeyer, D., Piriz, A., Recio, P., Mejia, D. R., Medrano, M., Lantigua, R. A., Vonsattel, J. P. G., Tosto, G., Teich, A. F., Ciener, B., Leskinen, S., Sivakumar, S., DeTure, M., Ranjan, D., Dickson, D., Murray, M., Lee, E., Wolk, D. A., … Vardarajan, B. N. (2024). Epigenetic and genetic risk of Alzheimer disease from autopsied brains in two ethnic groups. Acta Neuropathologica, 148(1). https://doi.org/10.1007/s00401-024-02778-y
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Kirk, J. S., Wang, J., Long, M., Rosario, S., Tracz, A., Ji, Y., Kumar, R., Liu, X., Jamroze, A., Singh, P. K., Puzanov, I., Chatta, G., Cheng, Q., Huang, J., Wrana, J. L., Lovell, J., Yu, H., Liu, S., Shen, M. M., … Tang, D. G. (2024). Integrated single-cell analysis defines the epigenetic basis of castration-resistant prostate luminal cells. Cell Stem Cell, 31(8), 1203-1221.e7. https://doi.org/10.1016/j.stem.2024.05.008
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Harris, K. M., Levitt, B., Gaydosh, L., Martin, C., Meyer, J. M., Mishra, A. A., Kelly, A. L., & Aiello, A. E. (2024). Sociodemographic and Lifestyle Factors and Epigenetic Aging in US Young Adults. JAMA Network Open, 7(7), e2427889. https://doi.org/10.1001/jamanetworkopen.2024.27889
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Shiau, S., Zumpano, F., Wang, Z., Shah, J., Tien, P. C., Ross, R. D., Sharma, A., & Yin, M. T. (2024). Epigenetic Aging and Musculoskeletal Outcomes in a Cohort of Women Living With HIV. The Journal of Infectious Diseases, 229(6), 1803–1811. https://doi.org/10.1093/infdis/jiae016
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Serra-Cardona, A., Hua, X., McNutt, S. W., Zhou, H., Toda, T., Jia, S., Chu, F., & Zhang, Z. (2024). The PCNA–Pol δ complex couples lagging strand DNA synthesis to parental histone transfer for epigenetic inheritance. Science Advances, 10(23). https://doi.org/10.1126/sciadv.adn5175
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Cheng, K., Seita, Y., Whelan, E. C., Yokomizo, R., Hwang, Y. S., Rotolo, A., Krantz, I. D., Ginsberg, J. P., Kolon, T. F., Lal, P., Luo, X., Pierorazio, P. M., Linn, R. L., Ryeom, S., & Sasaki, K. (2024). Defining the cellular origin of seminoma by transcriptional and epigenetic mapping to the normal human germline. Cell Reports, 43(6), 114323. https://doi.org/10.1016/j.celrep.2024.114323
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Lee, M. K., Azizgolshani, N., Zhang, Z., Perreard, L., Kolling, F. W., Nguyen, L. N., Zanazzi, G. J., Salas, L. A., & Christensen, B. C. (2024). Associations in cell type-specific hydroxymethylation and transcriptional alterations of pediatric central nervous system tumors. Nature Communications, 15(1). https://doi.org/10.1038/s41467-024-47943-9
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Huang, X., Balmer, S., Lyu, C., Xiang, Y., Malik, V., Wang, H., Zhang, Y., Cai, B., Xie, W., Hadjantonakis, A.-K., Zhou, H., & Wang, J. (2024). ZFP281 controls transcriptional and epigenetic changes promoting mouse pluripotent state transitions via DNMT3 and TET1. Developmental Cell, 59(4), 465-481.e6. https://doi.org/10.1016/j.devcel.2023.12.018
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Jiang, E. X., Domingo-Relloso, A., Abuawad, A., Haack, K., Tellez-Plaza, M., Fallin, M. D., Umans, J. G., Best, L. G., Zhang, Y., Kupsco, A., Belsky, D. W., Cole, S. A., & Navas-Acien, A. (2023). Arsenic Exposure and Epigenetic Aging: The Association with Cardiovascular Disease and All-Cause Mortality in the Strong Heart Study. Environmental Health Perspectives, 131(12). https://doi.org/10.1289/ehp11981
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Raffington, L., Schwaba, T., Aikins, M., Richter, D., Wagner, G. G., Harden, K. P., Belsky, D. W., & Tucker-Drob, E. M. (2023). Associations of socioeconomic disparities with buccal DNA-methylation measures of biological aging. Clinical Epigenetics, 15(1). https://doi.org/10.1186/s13148-023-01489-7
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Kasbekar, M., Mitchell, C. A., Proven, M. A., & Passegué, E. (2023). Hematopoietic stem cells through the ages: A lifetime of adaptation to organismal demands. Cell Stem Cell, 30(11), 1403–1420. https://doi.org/10.1016/j.stem.2023.09.013
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Hahn, J., Bressler, J., Domingo-Relloso, A., Chen, M.-H., McCartney, D. L., Teumer, A., van Dongen, J., Kleber, M. E., Aïssi, D., Swenson, B. R., Yao, J., Zhao, W., Huang, J., Xia, Y., Brown, M. R., Costeira, R., de Geus, E. J. C., Delgado, G. E., Dobson, D. A., … de Vries, P. S. (2023). DNA methylation analysis is used to identify novel genetic loci associated with circulating fibrinogen levels in blood. Journal of Thrombosis and Haemostasis, 21(5), 1135–1147. https://doi.org/10.1016/j.jtha.2023.01.015
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Taylor, J. Y., Huang, Y., Zhao, W., Wright, M. L., Wang, Z., Hui, Q., Potts‐Thompson, S., Barcelona, V., Prescott, L., Yao, Y., Crusto, C., Kardia, S. L. R., Smith, J. A., & Sun, Y. V. (2022). Epigenome‐wide association study of BMI in Black populations from InterGEN and GENOA. Obesity, 31(1), 243–255. Portico. https://doi.org/10.1002/oby.23589
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Ramaker, M. E., Corcoran, D. L., Apsley, A. T., Kobor, M. S., Kraus, V. B., Kraus, W. E., Lin, D. T. S., Orenduff, M. C., Pieper, C. F., Waziry, R., Huffman, K. M., & Belsky, D. W. (2022). Epigenome-wide Association Study Analysis of Calorie Restriction in Humans, CALERIETM Trial Analysis. The Journals of Gerontology: Series A, 77(12), 2395–2401. https://doi.org/10.1093/gerona/glac168
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Lapp, H. E., Margolis, A. E., & Champagne, F. A. (2022). Impact of a bisphenol A, F, and S mixture and maternal care on the brain transcriptome of rat dams and pups. NeuroToxicology, 93, 22–36. https://doi.org/10.1016/j.neuro.2022.08.014
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Du, W., Shi, G., Shan, C.-M., Li, Z., Zhu, B., Jia, S., Li, Q., & Zhang, Z. (2022). Mechanisms of chromatin-based epigenetic inheritance. Science China Life Sciences, 65(11), 2162–2190. https://doi.org/10.1007/s11427-022-2120-1
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Jain, P., Binder, A. M., Chen, B., Parada, H., Gallo, L. C., Alcaraz, J., Horvath, S., Bhatti, P., Whitsel, E. A., Jordahl, K., Baccarelli, A. A., Hou, L., Stewart, J. D., Li, Y., Justice, J. N., & LaCroix, A. Z. (2022). Analysis of Epigenetic Age Acceleration and Healthy Longevity Among Older US Women. JAMA Network Open, 5(7), e2223285. https://doi.org/10.1001/jamanetworkopen.2022.23285
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Son, J., Ding, H., Farb, T. B., Efanov, A. M., Sun, J., Gore, J. L., Syed, S. K., Lei, Z., Wang, Q., Accili, D., & Califano, A. (2021). BACH2 inhibition reverses β cell failure in type 2 diabetes models. Journal of Clinical Investigation, 131(24). https://doi.org/10.1172/jci153876
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