Hannover Medical School, Institute of Pharmacology, Hannover, Germany.
University of Regensburg, Institute of Pharmacy, Department of Pharmaceutical and Medicinal Chemistry II, Regensburg, Germany.
Biochem Pharmacol. 2015 Dec 1;98(3):432-9. doi: 10.1016/j.bcp.2015.09.011. Epub 2015 Sep 15.
The histamine (HA) receptor subtype 1 (H1R) and H4R are expressed on immune cells and contribute to an inflammatory reaction. Both receptor subtypes individually enhance the intracellular concentrations of calcium and regulate the accumulation of cAMP, increase MAPK activity, and regulate expression of e.g., inflammatory genes. In a previous study we characterized and compared signaling pathways of the murine orthologs of the H1R and the H4R recombinantly expressed at comparable levels in HEK 293 cells. In the present study, we aimed at analyzing possible interactions of the signaling pathways emerging at the mH1R and the mH4R. Therefore, we co-expressed both receptor subtypes at comparable levels in HEK 293 cells and investigated HA-induced signaling parameters such as the concentrations of intracellular calcium and cAMP, phosphorylation of the MAPKs p38, ERK 1, and ERK 2, and of the transcription factor CREB, and expression of the immediate early gene EGR-1. We demonstrate that the intracellular concentrations of calcium and cAMP as well as the EGR-1 expression are regulated exclusively via the mH1R. In contrast, both receptor subtypes H1R and H4R synergize in HA-induced MAPK activation. This synergism most probably relies on signaling pathways independent of the second messenger calcium and cAMP. In summary, we provide evidence that the mH1R inhibits or dampens the function of the co-expressed mH4R regarding specific parameters, while other signaling events are regulated cooperatively by the mH1R and the mH4R.
组胺 (HA) 受体亚型 1 (H1R) 和 H4R 表达于免疫细胞上,并有助于炎症反应。这两种受体亚型各自可增强细胞内钙浓度,并调节 cAMP 的积累,增加 MAPK 活性,并调节例如炎症基因的表达。在之前的研究中,我们对重组表达于 HEK 293 细胞中且表达水平相当的 H1R 和 H4R 的鼠类同源物的信号通路进行了鉴定和比较。在本研究中,我们旨在分析在 mH1R 和 mH4R 上出现的信号通路之间可能的相互作用。因此,我们在 HEK 293 细胞中以相当的水平共同表达这两种受体亚型,并研究了 HA 诱导的信号参数,例如细胞内钙和 cAMP 的浓度、MAPKs p38、ERK 1 和 ERK 2 的磷酸化、转录因子 CREB 的磷酸化以及即刻早期基因 EGR-1 的表达。我们证明细胞内钙和 cAMP 的浓度以及 EGR-1 的表达仅通过 mH1R 进行调节。相反,H1R 和 H4R 这两种受体亚型在 HA 诱导的 MAPK 激活中协同作用。这种协同作用很可能依赖于不依赖第二信使钙和 cAMP 的信号通路。总之,我们提供了证据表明,mH1R 抑制或减弱了共表达的 mH4R 对特定参数的功能,而其他信号事件则由 mH1R 和 mH4R 共同调节。