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Vedantham, K.

Publications and source records attributed to Vedantham, K..

2 recordsLinked to original sources

Melatonin Enhances Sleep via MT1-Driven Activation of Slo1 in Suprachiasmatic Nucleus Neurons

Melatonin promotes sleep through mechanisms that have remained elusive. Here, we identify a molecular pathway by which melatonin promotes sleep by activating BK channels (Slo1) via MT1 receptors in the suprachiasmatic nucleus (SCN), the brains master circadian clock. In melatonin-proficient CBA/CaJ mice, knockout of either MT1 or Slo1 reduces REM and NREM sleep during the rest phase (daytime), accompanied by prolonged action potentials and diminished afterhyperpolarization in SCN neurons. These electrophysiological and behavioral changes are minimal during the active phase (nighttime). Strikingly, Slo1 expression in the SCN peaks during the daytime, contrary to previous reports, but aligning with its sleep-promoting function. Slo1, but not MT1, deletion also triggers spontaneous seizures, highlighting broader functions beyond circadian control. Structural mapping identifies critical domains mediating MT1-Slo1 coupling. Together, these findings position the MT1-Slo1 signaling axis as a core circadian mechanism linking melatonin to sleep regulation and a potential therapeutic target for sleep disorders.

neuroscience↗

Track-A-Worm 2.0: A Software Suite for Quantifying Properties of C. elegans Locomotion, Bending, Sleep, and Action Potentials

Comparative analyses of locomotor behavior and cellular electrical properties between wild-type and mutant C. elegans are crucial for exploring the gene basis of behaviors and the underlying cellular mechanisms. Although many tools have been developed by research labs and companies, their application is often hindered by implementation difficulties or lack of features specifically suited for C. elegans. Track-A-Worm 2.0 addresses these challenges with three key components: WormTracker, SleepTracker, and Action Potential (AP) Analyzer. WormTracker accurately quantifies a comprehensive set of locomotor and body bending metrics, reliably distinguish between the ventral and dorsal sides, continuously tracks the animal using a motorized stage, and seamlessly integrates external devices, such as a light source for optogenetic stimulation. SleepTracker detects and quantifies sleep-like behavior in freely moving animals. AP Analyzer assesses the resting membrane potential, afterhyperpolarization level, and various AP properties, including threshold, amplitude, mid-peak width, rise and decay times, and maximum and minimum slopes. Importantly, it addresses the challenge of AP threshold quantification posed by the absence of a pre-upstroke inflection point. Track-A-Worm 2.0 is potentially a valuable tool for many C. elegans research labs due to its powerful functionality and ease of implementation.

neuroscience↗