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通过调节 TRPM8 的冷激活实现企鹅和大象的热适应范例。

A paradigm of thermal adaptation in penguins and elephants by tuning cold activation in TRPM8.

机构信息

Key Laboratory of Animal Models and Human Disease Mechanisms of the Chinese Academy of Sciences/Key Laboratory of Bioactive Peptides of Yunnan Province, Kunming Institute of Zoology, Chinese Academy of Sciences, 650223 Kunming, Yunnan, China.

College of Wildlife and Protected Area, Northeast Forestry University, 150040 Harbin, China.

出版信息

Proc Natl Acad Sci U S A. 2020 Apr 14;117(15):8633-8638. doi: 10.1073/pnas.1922714117. Epub 2020 Mar 27.

Abstract

To adapt to habitat temperature, vertebrates have developed sophisticated physiological and ecological mechanisms through evolution. Transient receptor potential melastatin 8 (TRPM8) serves as the primary sensor for cold. However, how cold activates TRPM8 and how this sensor is tuned for thermal adaptation remain largely unknown. Here we established a molecular framework of how cold is sensed in TRPM8 with a combination of patch-clamp recording, unnatural amino acid imaging, and structural modeling. We first observed that the maximum cold activation of TRPM8 in eight different vertebrates (i.e., African elephant and emperor penguin) with distinct side-chain hydrophobicity (SCH) in the pore domain (PD) is tuned to match their habitat temperature. We further showed that altering SCH for residues in the PD with solvent-accessibility changes leads to specific tuning of the cold response in TRPM8. We also observed that knockin mice expressing the penguin's TRPM8 exhibited remarkable tolerance to cold. Together, our findings suggest a paradigm of thermal adaptation in vertebrates, where the evolutionary tuning of the cold activation in the TRPM8 ion channel through altering SCH and solvent accessibility in its PD largely contributes to the setting of the cold-sensitive/tolerant phenotype.

摘要

为了适应栖息地温度,脊椎动物通过进化发展出了复杂的生理和生态机制。瞬时受体电位 melastatin 8(TRPM8)是冷的主要感受器。然而,冷如何激活 TRPM8,以及这个传感器如何适应温度变化,在很大程度上仍然未知。在这里,我们结合膜片钳记录、非天然氨基酸成像和结构建模,建立了一个关于 TRPM8 如何感知冷的分子框架。我们首先观察到,在 8 种不同的脊椎动物(即非洲象和帝企鹅)中,具有不同疏水性(SCH)的跨膜域(PD)中 TRPM8 的最大冷激活被调谐到与它们的栖息地温度相匹配。我们进一步表明,改变 PD 中溶剂可及性变化的残基的 SCH 会导致 TRPM8 冷反应的特异性调谐。我们还观察到,表达企鹅 TRPM8 的敲入小鼠对寒冷表现出显著的耐受性。总之,我们的研究结果表明了脊椎动物热适应的范例,即通过改变 TRPM8 离子通道 PD 中的冷激活的 SCH 和溶剂可及性,对冷敏感/耐受表型的设定有很大的贡献。

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