Chen Ping-Ho, Fu Yaw-Syan, Wang Yun-Ming, Yang Kun-Han, Wang Danny Ling, Huang Bin
School of Dentistry, College of Dental Medicine, Kaohsiung Medical University, Kaohsiung 80708, Taiwan.
Department of Biomedical Science and Environmental Biology, College of Life Science, Kaohsiung Medical University, No. 100, Shihchuan 1st Road, San Ming District, Kaohsiung 80708, Taiwan.
ScientificWorldJournal. 2014;2014:480387. doi: 10.1155/2014/480387. Epub 2014 May 21.
Hydrogen sulfide (H2S) and nitric oxide (NO), two endogenous gaseous molecules in endothelial cells, got increased attention with respect to their protective roles in the cardiovascular system. However, the details of the signaling pathways between H2S and NO in endothelia cells remain unclear. In this study, a treatment with NaHS profoundly increased the expression and the activity of endothelial nitric oxide synthase. Elevated gaseous NO levels were observed by a novel and specific fluorescent probe, 5-amino-2-(6-hydroxy-3-oxo-3H-xanthen-9-yl)benzoic acid methyl ester (FA-OMe), and quantified by flow cytometry. Further study indicated an increase of upstream regulator for eNOS activation, AMP-activated protein kinase (AMPK), and protein kinase B (Akt). By using a biotin switch, the level of NO-mediated protein S-nitrosylation was also enhanced. However, with the addition of the NO donor, NOC-18, the expressions of cystathionine-γ-lyase, cystathionine-β-synthase, and 3-mercaptopyruvate sulfurtransferase were not changed. The level of H2S was also monitored by a new designed fluorescent probe, 4-nitro-7-thiocyanatobenz-2-oxa-1,3-diazole (NBD-SCN) with high specificity. Therefore, NO did not reciprocally increase the expression of H2S-generating enzymes and the H2S level. The present study provides an integrated insight of cellular responses to H2S and NO from protein expression to gaseous molecule generation, which indicates the upstream role of H2S in modulating NO production and protein S-nitrosylation.
硫化氢(H₂S)和一氧化氮(NO)是内皮细胞中的两种内源性气体分子,它们在心血管系统中的保护作用受到了越来越多的关注。然而,内皮细胞中H₂S和NO之间信号通路的细节仍不清楚。在本研究中,用硫氢化钠(NaHS)处理可显著增加内皮型一氧化氮合酶的表达和活性。通过一种新型特异性荧光探针5-氨基-2-(6-羟基-3-氧代-3H-呫吨-9-基)苯甲酸甲酯(FA-OMe)观察到气态NO水平升高,并通过流式细胞术进行定量。进一步研究表明,eNOS激活的上游调节因子AMP激活的蛋白激酶(AMPK)和蛋白激酶B(Akt)增加。通过生物素转换,NO介导的蛋白质S-亚硝基化水平也得到增强。然而,添加NO供体NOC-18后,胱硫醚-γ-裂解酶、胱硫醚-β-合酶和3-巯基丙酮酸硫转移酶的表达没有变化。还通过一种新设计的具有高特异性的荧光探针4-硝基-7-硫氰酸苯并-2-恶唑-1,3-二唑(NBD-SCN)监测了H₂S水平。因此,NO不会相应地增加产生H₂S的酶的表达和H₂S水平。本研究从蛋白质表达到气体分子生成,对细胞对H₂S和NO的反应提供了全面的见解,表明H₂S在调节NO生成和蛋白质S-亚硝基化中起上游作用。