Laboratory of Ion Channel Research, Department of Cellular and Molecular Medicine and TRP Research Platform Leuven, KU Leuven, Leuven, Belgium.
BMC Neurosci. 2013 Feb 14;14:21. doi: 10.1186/1471-2202-14-21.
Somatosensory nerve fibres arising from cell bodies within the trigeminal ganglia (TG) in the head and from a string of dorsal root ganglia (DRG) located lateral to the spinal cord convey endogenous and environmental stimuli to the central nervous system. Although several members of the transient receptor potential (TRP) superfamily of cation channels have been implicated in somatosensation, the expression levels of TRP channel genes in the individual sensory ganglia have never been systematically studied.
Here, we used quantitative real-time PCR to analyse and compare mRNA expression of all TRP channels in TG and individual DRGs from 27 anatomically defined segments of the spinal cord of the mouse. At the mRNA level, 17 of the 28 TRP channel genes, TRPA1, TRPC1, TRPC3, TRPC4, TRPC5, TRPM2, TRPM3, TRPM4, TRPM5, TRPM6, TRPM7, TRPM8, TRPV1, TRPV2, TRPV4, TRPML1 and TRPP2, were detectable in every tested ganglion. Notably, four TRP channels, TRPC4, TRPM4, TRPM8 and TRPV1, showed statistically significant variation in mRNA levels between DRGs from different segments, suggesting ganglion-specific regulation of TRP channel gene expression. These ganglion-to-ganglion differences in TRP channel transcript levels may contribute to the variability in sensory responses in functional studies.
We developed, compared and refined techniques to quantitatively analyse the relative mRNA expression of all TRP channel genes at the single ganglion level. This study also provides for the first time a comparative mRNA distribution profile in TG and DRG along the entire vertebral column for the mammalian TRP channel family.
头部三叉神经节(TG)和脊髓旁的一连串背根神经节(DRG)中的细胞体产生的躯体感觉神经纤维将内源性和环境刺激传递到中枢神经系统。尽管瞬时受体电位(TRP)阳离子通道超家族的几个成员已被牵涉到躯体感觉中,但单个感觉神经节中 TRP 通道基因的表达水平从未被系统研究过。
在这里,我们使用定量实时 PCR 分析和比较了来自小鼠 27 个解剖定义的脊髓段的 TG 和单个 DRG 中所有 TRP 通道的 mRNA 表达。在 mRNA 水平上,28 个 TRP 通道基因中的 17 个,TRPA1、TRPC1、TRPC3、TRPC4、TRPC5、TRPM2、TRPM3、TRPM4、TRPM5、TRPM6、TRPM7、TRPM8、TRPV1、TRPV2、TRPV4、TRPML1 和 TRPP2,在每个测试的神经节中均可检测到。值得注意的是,四个 TRP 通道,TRPC4、TRPM4、TRPM8 和 TRPV1,在来自不同节段的 DRG 之间的 mRNA 水平上显示出统计学上的显著差异,表明 TRP 通道基因表达存在神经节特异性调节。这些 TRP 通道转录水平在神经节之间的差异可能有助于功能研究中感觉反应的可变性。
我们开发了、比较了和完善了技术,以定量分析单个神经节水平上所有 TRP 通道基因的相对 mRNA 表达。这项研究还首次提供了哺乳动物 TRP 通道家族在整个脊柱上 TG 和 DRG 中的比较 mRNA 分布图谱。