Area of research
Endocrine and Autonomic Systems · Molecular Biology
Research interest
Research interests include Circadian rhythm and melatonin, Light effects on plants, Gene Regulatory Network Analysis, and Genetics, Aging, and Longevity in Model Organisms.
Circadian disruption, clock genes, and metabolic health
Toward Precision Medicine: Circadian Rhythm of Blood Pressure and Chronotherapy for Hypertension - 2021 NHLBI Workshop Report
Lowering Nighttime Blood Pressure With Bedtime Dosing of Antihypertensive Medications: Controversies in Hypertension - Con Side of the Argument
Medicine in the Fourth Dimension
Shift Work Disrupts Circadian Regulation of the Transcriptome in Hospital Nurses
The NRON complex controls circadian clock function through regulated PER and CRY nuclear translocation
mTOR signaling regulates central and peripheral circadian clock function
Cisplatin-DNA adduct repair of transcribed genes is controlled by two circadian programs in mouse tissues
Systematic Analysis of Mouse Genome Reveals Distinct Evolutionary and Functional Properties Among Circadian and Ultradian Genes
Guidelines for Genome-Scale Analysis of Biological Rhythms
Experimental and statistical reevaluation provides no evidence for <i>Drosophila</i> courtship song rhythms
Modeling of RNA-seq fragment sequence bias reduces systematic errors in transcript abundance estimation
Neural clocks and Neuropeptide F/Y regulate circadian gene expression in a peripheral metabolic tissue
MYC Disrupts the Circadian Clock and Metabolism in Cancer Cells
KPNB1 mediates PER/CRY nuclear translocation and circadian clock function
A circadian gene expression atlas in mammals: Implications for biology and medicine
IVT-seq reveals extreme bias in RNA sequencing
Cell Type-Specific Functions of Period Genes Revealed by Novel Adipocyte and Hepatocyte Circadian Clock Models
Extensive Variation in Chromatin States Across Humans
The Circadian Clock Gates the Intestinal Stem Cell Regenerative State
Usf1, a suppressor of the circadian Clock mutant, reveals the nature of the DNA-binding of the CLOCK:BMAL1 complex in mice
Extensive Variation in Chromatin States Across Humans
DSpace@MIT (Massachusetts Institute of Technology) 2013cited by 0position: middle
The Transcription Factor Encyclopedia
Brain-Specific Rescue of Clock Reveals System-Driven Transcriptional Rhythms in Peripheral Tissue