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Glucosylsphingosine Activates Serotonin Receptor 2a and 2b: Implication of a Novel Itch Signaling Pathway

机译:葡萄糖基鞘氨醇激活5-羟色胺受体2a和2b:一种新型的瘙痒信号通路的含义。

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摘要

Recent reports claimed that glucosylsphingosine (GS) is highly accumulated and specifically evoking itch-scratch responses in the skins of atopic dermatitis (AD) patients. However, it was unclear how GS can trigger itch-scratch responses, since there were no known molecular singling pathways revealed yet. In the present study, it was verified for the first time that GS can activate mouse serotonin receptor 2a (mHtr2a) and 2b (mHtr2b), but not 2c (mHtr2c) that are expressed in HEK293T cells. Specifically, effects of GS on all mouse serotonin receptor 2 subfamily were evaluated by calcium imaging techniques. The GS-induced intracellular calcium increase was dose-dependent, and antagonists such as ketanserin (Htr2a antagonist) and RS-127445 (Htr2b antagonist) significantly blocked the GS-induced responses. Moreover, the proposed GS-induced responses appear to be mediated by phospholipase C (PLC), since pretreatment of a PLC inhibitor U-73122 abolished the GS-induced responses. Additionally, the GS-induced calcium influx is probably mediated by endogenous TRPC ion channels in HEK293T cells, since pretreatment of SKF-96365, an inhibitor for TRPC, significantly suppressed GS-induced response. In conclusion, the present study revealed for the first time that GS can stimulate mHtr2a and mHtr2b to induce calcium influx, by utilizing PLC-dependent pathway afterwards. Considering that GS is regarded as a pruritogen in AD, the present study implicates a novel GS-induced itch signaling pathway.
机译:最近的报道声称,异位性皮炎(AD)患者皮肤中葡萄糖基鞘氨醇(GS)高度积累,并且特别引起痒痒反应。但是,尚不清楚GS如何引发痒痒反应,因为目前尚无已知的分子单一途径被揭示出来。在本研究中,首次证实了GS可以激活小鼠血清素受体2a(mHtr2a)和2b(mHtr2b),但不能激活在HEK293T细胞中表达的2c(mHtr2c)。具体而言,通过钙成像技术评估了GS对所有小鼠血清素受体2亚家族的影响。 GS诱导的细胞内钙增加是剂量依赖性的,拮抗剂如酮色林(Htr2a拮抗剂)和RS-127445(Htr2b拮抗剂)显着阻断了GS诱导的反应。此外,由于对PLC抑制剂U-73122的预处理消除了GS诱导的反应,因此拟议的GS诱导的反应似乎是由磷脂酶C(PLC)介导的。另外,GS诱导的钙内流可能由HEK293T细胞中的内源TRPC离子通道介导,因为TRPC抑制剂SKF-96365的预处理显着抑制了GS诱导的反应。综上所述,本研究首次揭示了GS可通过随后利用PLC依赖性途径刺激mHtr2a和mHtr2b诱导钙内流。考虑到GS被认为是AD中的一种致敏原,本研究暗示了一种新的GS诱导的瘙痒信号传导途径。

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