Jennifer Marie Hurley
Affiliations: | Rensselaer Polytechnic Institute, Troy, NY, United States |
Area:
circadian biology, immunology, mycologyGoogle:
"Jennifer Hurley"Mean distance: (not calculated yet)
Parents
Sign in to add mentorMasayori Inouye | grad student | 2004-2009 | Univ. of Medicine & Dentistry of New Jersey (Microtree) |
Nancy Ann Woychik | grad student | 2004-2009 | Univ. of Medicine & Dentistry of New Jersey |
Jay C. Dunlap | post-doc | 2009-2015 | Dartmouth Medical School |
Jennifer J. Loros | post-doc | 2009-2015 | Dartmouth Medical School |
Children
Sign in to add traineeSowmya Srinivasan | research assistant | (Cell Biology Tree) | |
Noah Allen | grad student | RPI | |
Emmanuel Amoako | grad student | RPI | |
Sharleen Buel | grad student | RPI | |
Joshua Ru Chuah | grad student | RPI (Neurotree) | |
Carmalena Cordi | grad student | RPI | |
Naomi Falkenberg | grad student | RPI | |
Iswarya Muthukumarasamy | grad student | RPI | |
Lucas Sutton | grad student | RPI | |
Misty Zaczyk | grad student | RPI | |
Emily Collins | grad student | 2016- | RPI |
Hannah De Los Santos | grad student | 2016- | RPI |
Alexander Mosier | grad student | 2016- | RPI |
Jacqueline Pelham | grad student | 2018- | RPI |
Gretchen Clark | grad student | 2019- | RPI |
Meaghan Jankowski | grad student | 2019- | RPI |
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Publications
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Chuah J, Cordi CV, Hahn J, et al. (2025) Dual-approach co-expression analysis framework (D-CAF) enables identification of novel circadian co-regulation from multi-omic timeseries data. Bmc Bioinformatics. 26: 72 |
Tener SJ, Kim CE, Lee J, et al. (2024) Investigating the consequences of chronic short sleep for metabolism and survival of oxidative stress. Biorxiv : the Preprint Server For Biology |
Chuah J, Cordi C, Hahn J, et al. (2024) Dual-Approach Co-expression Analysis Framework (D-CAF) Enables Identification of Novel Circadian Regulation From Multi-Omic Timeseries Data. Biorxiv : the Preprint Server For Biology |
Jankowski MS, Griffith D, Shastry DG, et al. (2024) Disordered clock protein interactions and charge blocks turn an hourglass into a persistent circadian oscillator. Nature Communications. 15: 3523 |
Sutton LB, Hurley JM. (2023) Circadian regulation of physiology by disordered protein-protein interactions. Current Opinion in Structural Biology. 84: 102743 |
Pelham JF, Mosier AE, Altshuler SC, et al. (2023) Conformational changes in the negative arm of the circadian clock correlate with dynamic interactomes involved in post-transcriptional regulation. Cell Reports. 42: 112376 |
Muthukumarasamy I, Buel SM, Hurley JM, et al. (2023) NOX2 inhibition enables retention of the circadian clock in BV2 microglia and primary macrophages. Frontiers in Immunology. 14: 1106515 |
Cervantes-Silva MP, Carroll RG, Wilk MM, et al. (2022) The circadian clock influences T cell responses to vaccination by regulating dendritic cell antigen processing. Nature Communications. 13: 7217 |
Buel SM, Debopadhaya S, De Los Santos H, et al. (2022) The PAICE Suite Reveals Circadian Post-Transcriptional Timing of Non-Coding RNAs and Spliceosome Components in Mus musculus Macrophages. G3 (Bethesda, Md.) |
Clark GT, Yu Y, Urban CA, et al. (2022) Circadian control of heparan sulfate levels times phagocytosis of amyloid beta aggregates. Plos Genetics. 18: e1009994 |