Gary Yellen

Gary Yellen, Ph.D.

Dr. George Packer Berry Professor of Neurobiology, Harvard Medical School

LIVE - Gary Yellen - Faculty Profile by Neuro Coordinator

Gary Yellen, PhD

Title: Dr. George Packer Berry Professor of Neurobiology, Department of Neurobiology, Harvard Medical School

Email: gary_yellen@hms.harvard.edu
Website: yellen.hms.harvard.edu

The Goal

The Yellen lab studies how the brain uses energy and how this affects electrical activity in the brain.

The Impact

Our interest in the interplay between neural metabolism and excitability started with the ketogenic diet (a high-fat, low-carb diet found to calm overactive brain cells), but our studies now delve into the very basics of neural metabolism. We develop new tools for visualizing cell energy metabolism in real time. Understanding how neurons mobilize energy to meet their demands could help us understand and treat energy failure that could occur in neurodegenerative diseases.

A Closer Look

The Harvard Gazette, May 2012 – “Unraveling the secrets of the epilepsy diet”

Harvard researchers showed that tweaking a brain protein (BAD) can shift neurons to ketone-based metabolism, activate a protective potassium channel, and reduce seizures in mice — hinting at a drug that could mimic the ketogenic epilepsy diet without strict dieting.

Harvard Medical School / Dana-Farber Cancer Institute, May 2012 – “Reverse engineering epilepsy’s ‘miracle’ diet”

Gary’s research on the ketogenic diet, which protects against epileptic seizures, reveals a pathway that shows promise in the development of interventions which mimic the diet’s benefits without the need for adhering to strict regimens.

Publications View
The inward rectification mechanism of the HERG cardiac potassium channel.
Authors: Authors: Smith PL, Baukrowitz T, Yellen G.
Nature
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Use-dependent blockers and exit rate of the last ion from the multi-ion pore of a K+ channel.
Authors: Authors: Baukrowitz T, Yellen G.
Science
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On the use of thiol-modifying agents to determine channel topology.
Authors: Authors: Holmgren M, Liu Y, Xu Y, Yellen G.
Neuropharmacology
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A discrete site for general anesthetics on a postsynaptic receptor.
Authors: Authors: Forman SA, Miller KW, Yellen G.
Mol Pharmacol
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Modulation of K+ current by frequency and external [K+]: a tale of two inactivation mechanisms.
Authors: Authors: Baukrowitz T, Yellen G.
Neuron
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Covalent modification of engineered cysteines in the nicotinic acetylcholine receptor agonist-binding domain inhibits receptor activation.
Authors: Authors: McLaughlin JT, Hawrot E, Yellen G.
Biochem J
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Visual identification of individual transfected cells for electrophysiology using antibody-coated beads.
Authors: Authors: Jurman ME, Boland LM, Liu Y, Yellen G.
Biotechniques
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An engineered cysteine in the external mouth of a K+ channel allows inactivation to be modulated by metal binding.
Authors: Authors: Yellen G, Sodickson D, Chen TY, Jurman ME.
Biophys J
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Cysteines in the Shaker K+ channel are not essential for channel activity or zinc modulation.
Authors: Authors: Boland LM, Jurman ME, Yellen G.
Biophys J
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Conductance mutations of the nicotinic acetylcholine receptor do not act by a simple electrostatic mechanism.
Authors: Authors: Kienker P, Tomaselli G, Jurman M, Yellen G.
Biophys J
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