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Protein arginine methylation facilitates KCNQ channel-PIP2 interaction leading to seizure suppression

Authors :
Hyun-Ji Kim
Myong-Ho Jeong
Kyung-Ran Kim
Chang-Yun Jung
Seul-Yi Lee
Hanna Kim
Jewoo Koh
Tuan Anh Vuong
Seungmoon Jung
Hyunwoo Yang
Su-Kyung Park
Dahee Choi
Sung Hun Kim
KyeongJin Kang
Jong-Woo Sohn
Joo Min Park
Daejong Jeon
Seung-Hoi Koo
Won-Kyung Ho
Jong-Sun Kang
Seong-Tae Kim
Hana Cho
Source :
eLife, Vol 5 (2016)
Publication Year :
2016
Publisher :
eLife Sciences Publications Ltd, 2016.

Abstract

KCNQ channels are critical determinants of neuronal excitability, thus emerging as a novel target of anti-epileptic drugs. To date, the mechanisms of KCNQ channel modulation have been mostly characterized to be inhibitory via Gq-coupled receptors, Ca2+/CaM, and protein kinase C. Here we demonstrate that methylation of KCNQ by protein arginine methyltransferase 1 (Prmt1) positively regulates KCNQ channel activity, thereby preventing neuronal hyperexcitability. Prmt1+/- mice exhibit epileptic seizures. Methylation of KCNQ2 channels at 4 arginine residues by Prmt1 enhances PIP2 binding, and Prmt1 depletion lowers PIP2 affinity of KCNQ2 channels and thereby the channel activities. Consistently, exogenous PIP2 addition to Prmt1+/- neurons restores KCNQ currents and neuronal excitability to the WT level. Collectively, we propose that Prmt1-dependent facilitation of KCNQ-PIP2 interaction underlies the positive regulation of KCNQ activity by arginine methylation, which may serve as a key target for prevention of neuronal hyperexcitability and seizures.

Details

Language :
English
ISSN :
2050084X and 39894657
Volume :
5
Database :
Directory of Open Access Journals
Journal :
eLife
Publication Type :
Academic Journal
Accession number :
edsdoj.99f5880b39894657b44c4898e78261d5
Document Type :
article
Full Text :
https://doi.org/10.7554/eLife.17159