Portrait of a man with short light brown hair and rectangular glasses, wearing a black collared shirt against a dark background.

Wade Regehr, Ph.D.

Bullard Professor of Neurobiology, Harvard Medical School

Wade Regehr, PhD – Faculty Profile

Bullard Professor of Neurobiology in the Department of Neurobiology at Harvard Medical School.

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Contact

Email: wade_regehr@hms.harvard.edu

Regehr Lab website: Regehr Lab Website

The Aim

The Regehr Lab studies dynamic regulation of connections between neurons and the role of the cerebellum in behavior.

The Impact

Synapses are not fixed, static junctions. Their strength fluctuates from one moment to the next depending on recent activity. The lab is interested in the molecular machinery behind this flexibility, as well as the broader behavioral functions of the cerebellum.

Long associated with movement, the cerebellum is now understood to play an extensive role in social behavior and cognition. This research is revealing new connections between cerebellar dysfunction and conditions including autism, schizophrenia, and ataxia, and may open new avenues for treatment.

A Closer Look

Psychology Today — May 2020: Aggressive Behavior and the “Little Brain”

This Psychology Today feature covers the Regehr Lab’s use of light-activated proteins to control cerebellar neurons. Using this method, researchers found that they could rapidly dial mouse aggression up or down, challenging the long-held view that the cerebellum is purely a motor structure.

Harvard Brain Science Initiative — April 2020: Role of the Cerebellum in Aggression

This piece, written by a Regehr Lab postdoctoral researcher, explains how a single cluster of cerebellar neurons, activated with a flash of light, can suppress territorial attacks in mice within seconds. This points to the cerebellum’s underappreciated role in emotion and social behavior.

The accompanying article image is titled “Role of the Cerebellum in Aggression.” It explains that the cerebellum contains more than half of the brain’s neurons and may have important functions beyond balance and motor coordination.

Publications View
Cerebellar depolarization-induced suppression of inhibition is mediated by endogenous cannabinoids.
Authors: Authors: Kreitzer AC, Regehr WG.
J Neurosci
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Three-dimensional comparison of ultrastructural characteristics at depressing and facilitating synapses onto cerebellar Purkinje cells.
Authors: Authors: Xu-Friedman MA, Harris KM, Regehr WG.
J Neurosci
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Retrograde inhibition of presynaptic calcium influx by endogenous cannabinoids at excitatory synapses onto Purkinje cells.
Authors: Authors: Kreitzer AC, Regehr WG.
Neuron
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Cholinergic modulation of excitatory synaptic transmission in the CA3 area of the hippocampus.
Authors: Authors: Vogt KE, Regehr WG.
J Neurosci
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Developmental remodeling of the retinogeniculate synapse.
Authors: Authors: Chen C, Regehr WG.
Neuron
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Maximinis.
Authors: Authors: Xu-Friedman MA, Regehr WG.
Nat Neurosci
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Monitoring presynaptic calcium dynamics in projection fibers by in vivo loading of a novel calcium indicator.
Authors: Authors: Kreitzer AC, Gee KR, Archer EA, Regehr WG.
Neuron
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Probing fundamental aspects of synaptic transmission with strontium.
Authors: Authors: Xu-Friedman MA, Regehr WG.
J Neurosci
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Prolonged synaptic currents and glutamate spillover at the parallel fiber to stellate cell synapse.
Authors: Authors: Carter AG, Regehr WG.
J Neurosci
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Modulation of transmission during trains at a cerebellar synapse.
Authors: Authors: Kreitzer AC, Regehr WG.
J Neurosci
View full abstract on Pubmed