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
Expression of Torpedo nicotinic acetylcholine receptor subunits in yeast is enhanced by use of yeast signal sequences.
Authors: Authors: Yellen G, Migeon JC.
Gene
View full abstract on Pubmed
Sodium channels from human brain RNA expressed in Xenopus oocytes. Basic electrophysiologic characteristics and their modification by diphenylhydantoin.
Authors: Authors: Tomaselli GF, Marban E, Yellen G.
J Clin Invest
View full abstract on Pubmed
Permeation in potassium channels: implications for channel structure.
Authors: Authors: Yellen G.
Annu Rev Biophys Biophys Chem
View full abstract on Pubmed
The K+ channel of sarcoplasmic reticulum. A new look at Cs+ block.
Authors: Authors: Cukierman S, Yellen G, Miller C.
Biophys J
View full abstract on Pubmed
Ionic permeation and blockade in Ca2+-activated K+ channels of bovine chromaffin cells.
Authors: Authors: Yellen G.
J Gen Physiol
View full abstract on Pubmed
Relief of Na+ block of Ca2+-activated K+ channels by external cations.
Authors: Authors: Yellen G.
J Gen Physiol
View full abstract on Pubmed
Properties of single calcium channels in cardiac cell culture.
Authors: Authors: Reuter H, Stevens CF, Tsien RW, Yellen G.
Nature
View full abstract on Pubmed
Single Ca2+-activated nonselective cation channels in neuroblastoma.
Authors: Authors: Yellen G.
Nature
View full abstract on Pubmed
“Basic-23”, PDP-11 software for electrophysiology data acquisition and analysis (widely used internationally for electrophysiology and patch recording)
Authors: Authors: Yellen, G
Included earlier contributions from C.F
Authors: Authors: Yellen, Gary I
Pharmacological modulators of voltage-gated potassium ion channels