Store-Operated Ca2+ Channels: Mechanism, Function, Pharmacology, and Therapeutic Targets

Author:

Bakowski Daniel1,Murray Fraser2,Parekh Anant B.34

Affiliation:

1. Sygnature Discovery, Nottingham NG1 1GR, United Kingdom

2. Pandeia Therapeutics, Oxford OX4 4GP, United Kingdom

3. Department of Physiology, Anatomy and Genetics, Oxford University, Oxford OX1 3PT, United Kingdom;,

4. Current affiliation: National Institute of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, North Carolina 27709, USA

Abstract

Calcium (Ca2+) release–activated Ca2+ (CRAC) channels are a major route for Ca2+ entry in eukaryotic cells. These channels are store operated, opening when the endoplasmic reticulum (ER) is depleted of Ca2+, and are composed of the ER Ca2+ sensor protein STIM and the pore-forming plasma membrane subunit Orai. Recent years have heralded major strides in our understanding of the structure, gating, and function of the channels. Loss-of-function and gain-of-function mutants combined with RNAi knockdown strategies have revealed important roles for the channel in numerous human diseases, making the channel a clinically relevant target. Drugs targeting the channels generally lack specificity or exhibit poor efficacy in animal models. However, the landscape is changing, and CRAC channel blockers are now entering clinical trials. Here, we describe the key molecular and biological features of CRAC channels, consider various diseases associated with aberrant channel activity, and discuss targeting of the channels from a therapeutic perspective.

Publisher

Annual Reviews

Subject

Pharmacology,Toxicology

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