Center for Integrative Physiology and Molecular Medicine, Saarland University, Homburg, Germany.
Laboratory of Ion Channel Research, TRP Research Platform Leuven (TRPLe), Department of Cellular and Molecular Medicine, KU Leuven, Leuven, Belgium.
Mol Cell Neurosci. 2020 Jun;105:103495. doi: 10.1016/j.mcn.2020.103495. Epub 2020 Apr 13.
The vomeronasal organ (VNO), the sensory organ of the mammalian accessory olfactory system, mediates the activation of sexually dimorphic reproductive behavioral and endocrine responses in males and females. It is unclear how sexually dimorphic and state-dependent responses are generated by vomeronasal sensory neurons (VSNs). Here, we report the expression of the transient receptor potential (TRP) channel Trpm4, a Ca-activated monovalent cation channel, as a second TRP channel present in mouse VSNs, in addition to the diacylglycerol-sensitive Trpc2 channel. The expression of Trpm4 in the mouse VNO is sexually dimorphic and, in females, is tightly linked to their reproductive cycle. We show that Trpm4 protein expression is upregulated specifically during proestrus and estrus, when female mice are about to ovulate and become sexually active and receptive. The cyclic regulation of Trpm4 expression in female VSNs depends on ovarian sex hormones and is abolished by surgical removal of the ovaries (OVX). Trpm4 upregulation can be restored in OVX mice by systemic treatment with 17ß-estradiol, requires endogenous activity of aromatase enzyme, and is strongly reduced during late pregnancy. This cyclic regulation of Trpm4 offers a neural mechanism by which female mice could regulate the relative strength of sensory signals in their VSNs, depending on hormonal state. Trpm4 is likely to participate in sex-specific, estrous cycle-dependent and sex hormone-regulated functions of the VNO, and may serve as a previously unknown genetic substrate for dissecting mammalian sexually dimorphic cellular and behavioral responses.
犁鼻器(VNO)是哺乳动物附属嗅觉系统的感觉器官,介导雄性和雌性动物激活有性二态生殖行为和内分泌反应。目前尚不清楚犁鼻感觉神经元(VSN)如何产生有性二态和状态依赖性反应。在这里,我们报告了瞬时受体电位(TRP)通道 Trpm4 的表达,该通道是一种 Ca 激活的单价阳离子通道,除了二酰基甘油敏感的 Trpc2 通道外,它还是存在于小鼠 VSN 中的第二种 TRP 通道。Trpm4 在小鼠犁鼻器中的表达具有有性二态性,并且在雌性中,与它们的生殖周期紧密相关。我们表明,Trpm4 蛋白表达在动情前期和发情期特异性上调,此时雌性小鼠即将排卵并变得具有性活力和接受性。雌性 VSN 中 Trpm4 表达的周期性调节取决于卵巢性激素,并被卵巢切除(OVX)消除。OVX 小鼠中,全身性给予 17ß-雌二醇可恢复 Trpm4 上调,需要芳香酶酶的内源性活性,并且在妊娠后期明显减少。这种 Trpm4 的周期性调节为雌性小鼠提供了一种神经机制,可根据激素状态调节其 VSN 中感觉信号的相对强度。Trpm4 可能参与 VNO 的性别特异性、发情周期依赖性和性激素调节功能,并可能作为一种以前未知的遗传基质,用于剖析哺乳动物有性二态的细胞和行为反应。