Department of Physiology and Pharmacology, and Center for Hypertension and Personalized Medicine, University of Toledo College of Medicine and Life Sciences, University of Toledo Health Science Campus, 3000 Transverse Dr., Toledo, Ohio 43614 USA.
Neurobiology Laboratory, National Institute of Environmental Health Sciences, 111 TW Alexander Dr., Research Triangle Park, North Carolina 27709 USA.
Sci Rep. 2017 Jan 4;7:39867. doi: 10.1038/srep39867.
In previous studies using mice with macrophage-specific loss of TRPC3 we found a significant, selective effect of TRPC3 on the biology of M1, or inflammatory macrophages. Whereas activation of some components of the unfolded protein response and the pro-apoptotic mediators CamkII and Stat1 was impaired in Trpc3-deficient M1 cells, gathering insight about other molecular signatures within macrophages that might be affected by Trpc3 expression requires an alternative approach. In the present study we conducted RNA-seq analysis to interrogate the transcriptome of M1 macrophages derived from mice with macrophage-specific loss of TRPC3 and their littermate controls. We identified 160 significantly differentially expressed genes between the two groups, of which 62 were upregulated and 98 downregulated in control vs. Trpc3-deficient M1 macrophages. Gene ontology analysis revealed enrichment in processes associated to cellular movement and lipid signaling, whereas the enriched Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways included networks for calcium signaling and cell adhesion molecules, among others. This is the first deep transcriptomic analysis of macrophages in the context of Trpc3 deficiency and the data presented constitutes a unique resource to further explore functions of TRPC3 in macrophage biology.
在之前使用巨噬细胞特异性 TRPC3 缺失的小鼠进行的研究中,我们发现 TRPC3 对 M1 或炎症巨噬细胞的生物学有显著的选择性影响。尽管 Trpc3 缺陷的 M1 细胞中未折叠蛋白反应的一些成分的激活以及促凋亡介质 CamkII 和 Stat1 的激活受到损害,但要了解 TRPC3 表达可能影响的巨噬细胞内的其他分子特征,需要采用另一种方法。在本研究中,我们进行了 RNA-seq 分析,以探究源自巨噬细胞特异性 TRPC3 缺失的小鼠及其同窝对照的 M1 巨噬细胞的转录组。我们在两组之间鉴定出 160 个显著差异表达的基因,其中 62 个在对照与 Trpc3 缺陷的 M1 巨噬细胞中上调,98 个下调。基因本体论分析显示,与细胞运动和脂质信号相关的过程富集,而丰富的京都基因与基因组百科全书(KEGG)途径包括钙信号和细胞粘附分子等网络。这是 TRPC3 缺失背景下巨噬细胞的首次深度转录组分析,所提供的数据构成了进一步探索 TRPC3 在巨噬细胞生物学中功能的独特资源。