Wang Qiushi, Song Binlin, Jiang Shuai, Liang Chen, Chen Xiao, Shi Jing, Li Xinyuan, Sun Yingying, Wu Mingming, Zhao Dan, Zhang Zhi-Ren, Ma He-Ping
Departments of Clinical Pharmacy and Cardiology, Institute of Clinical Pharmacy, The Second Affiliated Hospital, Harbin Medical University, Key Laboratories of Education Ministry for Myocardial Ischemia Mechanism and Treatment, Harbin 150086, China.
Department of Physiology, Emory University School of Medicine, Atlanta, GA 30322, USA.
Oxid Med Cell Longev. 2015;2015:976848. doi: 10.1155/2015/976848. Epub 2015 May 11.
Advanced glycation end-products (AGEs) are complex and heterogeneous compounds implicated in diabetes. Sodium reabsorption through the epithelial sodium channel (ENaC) at the distal nephron plays an important role in diabetic hypertension. Here, we report that H2S antagonizes AGEs-induced ENaC activation in A6 cells. ENaC open probability (P O ) in A6 cells was significantly increased by exogenous AGEs and that this AGEs-induced ENaC activity was abolished by NaHS (a donor of H2S) and TEMPOL. Incubating A6 cells with the catalase inhibitor 3-aminotriazole (3-AT) mimicked the effects of AGEs on ENaC activity, but did not induce any additive effect. We found that the expression levels of catalase were significantly reduced by AGEs and both AGEs and 3-AT facilitated ROS uptake in A6 cells, which were significantly inhibited by NaHS. The specific PTEN and PI3K inhibitors, BPV(pic) and LY294002, influence ENaC activity in AGEs-pretreated A6 cells. Moreover, after removal of AGEs from AGEs-pretreated A6 cells for 72 hours, ENaC P O remained at a high level, suggesting that an AGEs-related "metabolic memory" may be involved in sodium homeostasis. Our data, for the first time, show that H2S prevents AGEs-induced ENaC activation by targeting the ROS/PI3K/PTEN pathway.
晚期糖基化终末产物(AGEs)是与糖尿病相关的复杂且异质性的化合物。远端肾单位通过上皮钠通道(ENaC)进行的钠重吸收在糖尿病性高血压中起重要作用。在此,我们报告硫化氢(H2S)可拮抗AGEs诱导的A6细胞中ENaC的激活。外源性AGEs显著增加了A6细胞中ENaC的开放概率(PO),而这种AGEs诱导的ENaC活性被NaHS(一种H2S供体)和TEMPOL消除。用过氧化氢酶抑制剂3-氨基三唑(3-AT)孵育A6细胞可模拟AGEs对ENaC活性的影响,但未诱导任何叠加效应。我们发现AGEs显著降低了过氧化氢酶的表达水平,并且AGEs和3-AT均促进了A6细胞对活性氧(ROS)的摄取,而NaHS可显著抑制这种摄取。特异性的PTEN和PI3K抑制剂BPV(pic)和LY294002影响经AGEs预处理的A6细胞中的ENaC活性。此外,在将AGEs从经AGEs预处理的A6细胞中去除72小时后,ENaC的PO仍维持在高水平,这表明与AGEs相关的“代谢记忆”可能参与了钠稳态。我们的数据首次表明,H2S通过靶向ROS/PI3K/PTEN途径来阻止AGEs诱导的ENaC激活。