Ion channels of cold transduction and transmission.

IF 3.3 2区 医学 Q1 PHYSIOLOGY Journal of General Physiology Pub Date : 2024-10-07 Epub Date: 2024-07-25 DOI:10.1085/jgp.202313529
Cheyanne M Lewis, Theanne N Griffith
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Abstract

Thermosensation requires the activation of a unique collection of ion channels and receptors that work in concert to transmit thermal information. It is widely accepted that transient receptor potential melastatin 8 (TRPM8) activation is required for normal cold sensing; however, recent studies have illuminated major roles for other ion channels in this important somatic sensation. In addition to TRPM8, other TRP channels have been reported to contribute to cold transduction mechanisms in diverse sensory neuron populations, with both leak- and voltage-gated channels being identified for their role in the transmission of cold signals. Whether the same channels that contribute to physiological cold sensing also mediate noxious cold signaling remains unclear; however, recent work has found a conserved role for the kainite receptor, GluK2, in noxious cold sensing across species. Additionally, cold-sensing neurons likely engage in functional crosstalk with nociceptors to give rise to cold pain. This Review will provide an update on our understanding of the relationship between various ion channels in the transduction and transmission of cold and highlight areas where further investigation is required.

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冷传导和传输的离子通道。
热感觉需要激活一系列独特的离子通道和受体,它们协同工作以传递热信息。人们普遍认为,正常的冷感觉需要瞬时受体电位美司他丁 8(TRPM8)的激活;然而,最近的研究揭示了其他离子通道在这种重要的躯体感觉中的主要作用。据报道,除了 TRPM8 之外,其他 TRP 通道也有助于不同感觉神经元群中的冷传导机制,泄漏和电压门控通道在冷信号传输中的作用均已得到确认。然而,最近的研究发现,kainite 受体 GluK2 在不同物种的严寒感知中扮演着一致的角色。此外,冷感神经元很可能与痛觉感受器发生功能性串扰,从而引起冷痛。本综述将介绍我们对各种离子通道在冷的传导和传输中的关系的最新理解,并强调需要进一步研究的领域。
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来源期刊
CiteScore
6.00
自引率
10.50%
发文量
88
审稿时长
6-12 weeks
期刊介绍: General physiology is the study of biological mechanisms through analytical investigations, which decipher the molecular and cellular mechanisms underlying biological function at all levels of organization. The mission of Journal of General Physiology (JGP) is to publish mechanistic and quantitative molecular and cellular physiology of the highest quality, to provide a best-in-class author experience, and to nurture future generations of independent researchers. The major emphasis is on physiological problems at the cellular and molecular level.
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