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TRPswitch-A Step-Function Chemo-optogenetic Ligand for the Vertebrate TRPA1 Channel

机译:TRPSwitch-脊椎动物TRPA1通道的阶梯式化学 - 致光学配体

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摘要

Chemo-optogenetics has produced powerful tools for optical control of cell activity, but current tools suffer from a variety of limitations including low unitary conductance, the need to modify the target channel, or the inability to control both on and off switching. Using a zebrafish behavior-based screening strategy, we discovered "TRPswitch", a photoswitchable nonelectrophilic ligand scaffold for the transient receptor potential ankyrin 1 (TRPA1) channel. TRPA1 exhibits high unitary channel conductance, making it an ideal target for chemo-optogenetic tool development. Key molecular determinants for the activity of TRPswitch were elucidated and allowed for replacement of the TRPswitch azobenzene with a next-generation azoheteroarene. The TRPswitch compounds enable reversible, repeatable, and nearly quantitative light-induced activation and deactivation of the vertebrate TRPAl channel with violet and green light, respectively. The utility of TRPswitch compounds was demonstrated in larval zebrafish hearts exogenously expressing zebrafish Trpalb, where the heartbeat could be controlled using TRPswitch and light. Therefore, TRPA1/TRPswitch represents a novel step-function chemo-optogenetic system with a unique combination of high conductance, high efficiency, activity against an unmodified vertebrate channel, and capacity for bidirectional optical switching. This chemo-optogenetic system will be particularly applicable in systems where a large depolarization current is needed or sustained channel activation is desirable.
机译:化学 - OptogeSetics生产了强大的电池活动的光学控制工具,但目前的工具遭受各种限制,包括低单位电导,需要修改目标通道,或无法控制开关的无法控制。使用基于斑马鱼行为的筛选策略,我们发现了“TRPSwitch”,是瞬态受体电位肛交1(TRPA1)通道的光学开放的非电钻配体支架。 TRPA1表现出高统一的通道电导,使其成为化学致素工具开发的理想目标。阐明了Trpswitch活性的关键分子测定剂,并允许用下一代亚氮酸乙烯替换Trpswitch偶氮苯。 TRPSwitch化合物可以分别使可逆,可重复和几乎定量的光诱导的激活和与紫色和绿光的脊椎动物Trpal通道的停用。 Trpswitch化合物的纯粹是在幼虫斑马鱼心中表达斑马鱼TRPALB的危险,可以使用TRPSwitch和Light来控制心跳。因此,TRPA1 / TRPSwitch代表了一种新的阶梯式化学致光学系统,具有高导电,高效率,对未修改的脊椎动物通道的活动的独特组合,以及双向光学切换的能力。该化疗系统特别适用于所需的大型去极化电流或持续通道激活的系统中。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第41期|17457-17468|共12页
  • 作者单位

    Department of Pharmacology and Toxicology University of Utah Salt Lake City Utah 84112 United States;

    Department of Chemistry Molecular Sciences Research Hub Imperial College London London W12OBZ United Kingdom;

    Department of Internal Medicine Nora Eccles Harrison Cardiovascular Research and Training Institute University of Utah Salt Lake City Utah 84112 United States;

    Department of Chemistry Molecular Sciences Research Hub Imperial College London London W12OBZ United Kingdom;

    Department of Internal Medicine Nora Eccles Harrison Cardiovascular Research and Training Institute University of Utah Salt Lake City Utah 84112 United States;

    Department of Chemistry Molecular Scences Research Hub Imperial College London London W12OBZ United Kingdom;

    Department of Pharmacology and Toxicology University of Utah Salt Lake City Utah 84112 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:16:51

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