光薬理学:光を使って寒冷センサーを制御する(Photopharmacology: using light to control cold sensors)

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2024-12-16 ミュンヘン大学(LMU)

LMUミュンヘンの研究チームは、光でTRPM8イオンチャネルを制御できる新しい分子「アゾメントール」を開発しました。TRPM8チャネルは細胞膜上に存在し、冷感やペパーミントの成分であるメントールに反応する受容体として知られ、痛みの感知や多くの疾患に関与しています。アゾメントールは、UV光でこれらのチャネルを活性化し、青色光で再び不活性化することが可能で、時間的・空間的に精密かつ可逆的な制御を実現します。この光薬理学的アプローチは、従来の化学療法で見られる全身性の副作用を回避する可能性があり、より精密で副作用の少ない新たな治療法の開発に道を開くと期待されています。

<関連情報>

光スイッチ可能なメントールによるTRPM8チャネルの光制御 Optical Control of TRPM8 Channels with Photoswitchable Menthol

Jasmin Becker, Clara S. Ellerkmann, Hannah Schmelzer, Christian Hermann, Kyra Lützel, Thomas Gudermann, David B. Konrad, Dirk Trauner, Ursula Storch, Michael Mederos y Schnitzler
Angewandte Chemie International Edition  Published: 11 December 2024
DOI:https://doi.org/10.1002/anie.202416549

Abstract

Transient receptor potential melastatin 8 (TRPM8) channels are well known as sensors for cold temperatures and cooling agents such as menthol and icilin and these channels are tightly regulated by the membrane lipid phosphoinositol-4,5-bisphosphate (PIP2). Since TRPM8 channels emerged as promising drug targets for treating pain, itching, obesity, cancer, dry eye disease, and inflammation, we aimed at developing a high-precision TRPM8 channel activator, to achieve spatiotemporal control of TRPM8 activity with light. In this study, we designed, synthesized and characterized the first photoswitchable TRPM8 activator azo-menthol (AzoM). AzoM enables optical control of endogenously and heterologously expressed TRPM8 channels with UV and blue light which is demonstrated by performing patch-clamp experiments. Moreover, AzoM facilitates the reliable determination of activation, inactivation, and deactivation kinetics thereby providing further insights into the channel gating. Using AzoM, the specific roles of individual amino acids for AzoM or PIP2 binding and for sensitization by PIP2 can be elucidated. Altogether, AzoM represents as a high-precision pharmaceutical tool for reversible control of TRPM8 channel function that enhances our biophysical understanding of TRPM8 channels and holds the potential to support the development of novel pharmaceuticals.

有機化学・薬学
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