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Proteins / Membrane biology / Integral membrane proteins / KvLQT2 / Benign familial neonatal epilepsy / Voltage-gated potassium channel / KCNQ4 / Muscarinic acetylcholine receptor / Voltage-dependent calcium channel / Biology / Ion channels / Electrophysiology


59 J Physiolpp 59–74 Protein kinase C shifts the voltage dependence of KCNQ/M channels expressed in Xenopus oocytes
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Document Date: 2010-02-09 20:16:01


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City

Tokyo / Union City / Osaka / /

Company

Sigma-Aldrich / /

Country

Japan / United States / /

/

Facility

Dental University / National Institute / /

IndustryTerm

pipette solution / cRNA solution / external solution / voltage-clamp experimental protocols / appropriate solution / Stock solutions / expression systems / external bath solution / pCLAMP8 software / bath solution / fitted using pCLAMP8 software / /

Organization

KCNQ / Graduate School / Faculty of Medicine / Physiological Society / Division of Biophysics and Neurobiology / Animal Care Committee / National Institute for Physiological Sciences / Tokyo Medical and Dental University / Department of Molecular Physiology / /

Person

Gq / Schroeder / /

Position

RT / representative / Corresponding author / /

Product

M-16 / Sigma / potassium acetate / /

ProgrammingLanguage

R / C / /

RadioStation

KCNQ / /

Technology

voltage-clamp experimental protocols / /

SocialTag