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Thermosensitive TRP channel pore turret is part of the temperature activation pathway

机译:热敏TRP通道孔转塔是温度激活途径的一部分

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摘要

Temperature sensing is crucial for homeotherms, including human beings, to maintain a stable body core temperature and respond to the ambient environment. A group of exquisitely temperature-sensitive transient receptor potential channels, termed thermoTRPs, serve as cellular temperature sensors. How thermoTRPs convert thermal energy (heat) into protein conformational changes leading to channel opening remains unknown. Here we demonstrate that the pathway for temperature-dependent activation is distinct from those for ligand- and voltage-dependent activation and involves the pore turret. We found that mutant channels with an artificial pore turret sequence lose temperature sensitivity but maintain normal ligand responses. Using site-directed fluorescence recordings we observed that temperature change induces a significant rearrangement of TRPV1 pore turret that is coupled to channel opening. This movement is specifically associated to temperature-dependent activation and is not observed during ligand- and voltage-dependent channel activation. These observations suggest that the turret is part of the temperature-sensing apparatus in thermoTRP channels, and its conformational change may give rise to the large entropy that defines high temperature sensitivity.
机译:温度感测对于包括人在内的恒温疗法对于维持稳定的人体核心温度并响应周围环境至关重要。一组称为温度TRP的对温度敏感的瞬态受体电位通道,可作为细胞温度传感器。 thermoTRPs如何将热能(热)转换成导致通道开放的蛋白质构象变化仍然未知。在这里,我们证明了温度依赖性激活的途径不同于配体和电压依赖性激活的途径,并且涉及孔转塔。我们发现具有人工孔转塔序列的突变通道失去了温度敏感性,但保持了正常的配体响应。使用定点荧光记录,我们观察到温度变化会引起TRPV1孔转塔的显着重排,该孔转塔与通道打开有关。该移动与温度依赖性激活特别相关,在配体和电压依赖性通道激活期间未观察到。这些观察结果表明,炮塔是thermoTRP通道中温度传感设备的一部分,其构象变化可能会引起定义高温敏感性的大熵。

著录项

  • 来源
  • 作者单位

    Department of Physiology and Membrane Biology, University of California Davis, Davis, CA 95616;

    Department of Physiology and Membrane Biology, University of California Davis, Davis, CA 95616 Department of Neurobiology, Neuroscience Research Institute, Peking University Health Science Center, Beijing 100083, China;

    Department of Neurobiology, Neuroscience Research Institute, Peking University Health Science Center, Beijing 100083, China;

    Department of Physiology and Membrane Biology, University of California Davis, Davis, CA 95616;

  • 收录信息 美国《科学引文索引》(SCI);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
  • 中图分类
  • 关键词

    conformational change; fluorescence resonance energy transfer; temperature sensing; thermodynamics;

    机译:构象变化荧光共振能量转移;温度感应;热力学;
  • 入库时间 2022-08-18 00:41:21

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