TRPV1 通道是新发现的维生素 D 靶点。

Wentong Long, Janyne Johnson, Subha Kalyaanamoorthy, Peter Light
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引用次数: 0

摘要

众所周知,维生素 D 能在不同类型的组织中引发多种生物效应,人们认为它几乎只作用于细胞核内的典型受体,导致基因转录变化和随后的细胞反应。然而,并非所有观察到的维生素 D 作用都可归因于这一唯一机制,其他细胞靶点可能也存在,但仍有待确定。我们最近发现维生素 D 是瞬时受体电位 Vanilloid 家族 1(TRPV1)通道的部分激动剂,这可能为我们提供了新的视角,让我们了解这种重要的维生素是如何独立或与核维生素 D 受体一起发挥其生物效应的。在这篇综述中,我们讨论了有关维生素 D 信号传导中这种明显差异的文献,并比较了维生素 D 和已知 TRPV1 配体与 TRPV1 的结合情况。此外,我们还提供了支持这一观点的证据,即这种新的维生素 D/TRPV1 轴可能解释了这种维生素在已知 TRPV1 表达与维生素 D 缺乏重叠的疾病状态中的一些有益作用。最后,我们还讨论了维生素 D 是否还能作用于 TRP 离子通道家族的其他成员。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

TRPV1 channels as a newly identified target for vitamin D.

TRPV1 channels as a newly identified target for vitamin D.

TRPV1 channels as a newly identified target for vitamin D.

TRPV1 channels as a newly identified target for vitamin D.

Vitamin D is known to elicit many biological effects in diverse tissue types and is thought to act almost exclusively upon its canonical receptor within the nucleus, leading to gene transcriptional changes and the subsequent cellular response. However, not all the observed effects of vitamin D can be attributed to this sole mechanism, and other cellular targets likely exist but remain to be identified. Our recent discovery that vitamin D is a partial agonist of the Transient Receptor Potential Vanilloid family 1 (TRPV1) channel may provide new insights as to how this important vitamin exerts its biological effects either independently or in addition to the nuclear vitamin D receptor. In this review, we discuss the literature surrounding this apparent discrepancy in vitamin D signaling and compare vitamin D with known TRPV1 ligands with respect to their binding to TRPV1. Furthermore, we provide evidence supporting the notion that this novel vitamin D/TRPV1 axis may explain some of the beneficial actions of this vitamin in disease states where TRPV1 expression and vitamin D deficiency are known to overlap. Finally, we discuss whether vitamin D may also act on other members of the TRP family of ion channels.

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