Multiple Effects of Echinochrome A on Selected Ion Channels Implicated in Skin Physiology

Author:

Kim Sung12ORCID,Chung Elina12ORCID,Vasileva Elena3ORCID,Mishchenko Natalia3ORCID,Fedoreyev Sergey3ORCID,Stonik Valentin3,Kim Hyoung4ORCID,Nam Joo56ORCID,Kim Sung12

Affiliation:

1. Department of Physiology, and Department of Biomedical Science, Seoul National University College of Medicine, Seoul 03080, Republic of Korea

2. Ischemic/Hypoxic Disease Institute, Seoul National University, Seoul 03080, Republic of Korea

3. G.B. Elyakov Pacific Institute of Bioorganic Chemistry, Far-Eastern Branch of the Russian Academy of Science, 690022 Vladivostok, Russia

4. Department of Physiology, College of Medicine, Cardiovascular and Metabolic Disease Center, Smart Marine Therapeutic Center, Department of Health Sciences and Technology, Graduate School, Inje University, Busan 47392, Republic of Korea

5. Department of Physiology, Dongguk University College of Medicine, Gyeongju 38066, Republic of Korea

6. Channelopathy Research Center (CRC), Dongguk University College of Medicine, Goyang-si 10326, Republic of Korea

Abstract

Echinochrome A (Ech A), a naphthoquinoid pigment from sea urchins, is known to have anti-inflammatory and analgesic effects that have been suggested to be mediated by antioxidant activity and intracellular signaling modulation. In addition to these mechanisms, the ion channels in keratinocytes, immune cells, and nociceptive neurons may be the target for the pharmacological effects. Here, using the patch clamp technique, we investigated the effects of Ech A on the Ca2+-permeable TRPV3, TRPV1 and Orai1 channels and the two-pore domain K+ (K2P) channels (TREK/TRAAK, TASK-1, and TRESK) overexpressed in HEK 293 cells. Ech A inhibited both the TRPV3 and Orai1 currents, with IC50 levels of 2.1 and 2.4 μM, respectively. The capsaicin-activated TRPV1 current was slightly augmented by Ech A. Ech A alone did not change the amplitude of the TREK-2 current (ITREK2), but pretreatments with Ech A markedly facilitated ITREK2 activation by 2-APB, arachidonic acid (AA), and acidic extracellular pH (pHe). Similar facilitation effects of Ech A on TREK-1 and TRAAK were observed when they were stimulated with 2-APB and AA, respectively. On the contrary, Ech A did not affect the TRESK and TASK-1 currents. Interestingly, the ITREK2 maximally activated by the combined application of 2-APB and Ech A was not inhibited by norfluoxetine but was still completely inhibited by ruthenium red. The selective loss of sensitivity to norfluoxetine suggested an altered molecular conformation of TREK-2 by Ech A. We conclude that the Ech A-induced inhibition of the Ca2+-permeable cation channels and the facilitation of the TREK/TRAAK K2P channels may underlie the analgesic and anti-inflammatory effects of Ech A.

Funder

Korea Health Industry Development Institute

National Research Foundation of Korea

Publisher

MDPI AG

Subject

Drug Discovery,Pharmacology, Toxicology and Pharmaceutics (miscellaneous),Pharmaceutical Science

Reference68 articles.

1. Exploiting the diversity of ion channels: Modulation of ion channels for therapeutic indications;Liu;Handb. Exp. Pharmacol.,2019

2. Ion channels in drug discovery and safety pharmacology;Imbrici;Methods Mol. Biol.,2018

3. Contributions of natural products to ion channel pharmacology;Bajaj;Nat. Prod. Rep.,2020

4. Anatomy, histology and immunohistochemistry of normal human skin;Kanitakis;Eur. J. Dermatol.,2002

5. A heat-sensitive TRP channel expressed in keratinocytes;Peier;Science,2002

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1. TRPV3 Ion Channel: From Gene to Pharmacology;International Journal of Molecular Sciences;2023-05-11

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