4.4 Review

TRPs et al.: a molecular toolkit for thermosensory adaptations

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出版社

SPRINGER
DOI: 10.1007/s00424-018-2120-5

关键词

Thermosensation; Molecular adaptations; Ion channels; TRP channels; Neuronal excitability

资金

  1. Beckman Foundation
  2. Rita Allen Foundation
  3. National Institute of Health [1R01NS091300-01A1, 5 T32 HG003198]
  4. American Heart Association [14SDG17880015]
  5. National Science Foundation [1453167]
  6. Division Of Integrative Organismal Systems
  7. Direct For Biological Sciences [1453167] Funding Source: National Science Foundation

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The ability to sense temperature is crucial for the survival of an organism. Temperature influences all biological operations, from rates of metabolic reactions to protein folding, and broad behavioral functions, from feeding to breeding, and other seasonal activities. The evolution of specialized thermosensory adaptations has enabled animals to inhabit extreme temperature niches and to perform specific temperature-dependent behaviors. The function of sensory neurons depends on the participation of various types of ion channels. Each of the channels involved in neuronal excitability, whether through the generation of receptor potential, action potential, or the maintenance of the resting potential have temperature-dependent properties that can tune the neuron's response to temperature stimuli. Since the function of all proteins is affected by temperature, animals need adaptations not only for detecting different temperatures, but also for maintaining sensory ability at different temperatures. A full understanding of the molecular mechanism of thermosensation requires an investigation of all channel types at each step of thermosensory transduction. A fruitful avenue of investigation into how different molecules can contribute to the fine-tuning of temperature sensitivity is to study the specialized adaptations of various species. Given the diversity of molecular participants at each stage of sensory transduction, animals have a toolkit of channels at their disposal to adapt their thermosensitivity to their particular habitats or behavioral circumstances.

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