Advanced glycation end products impair coronary artery BK channels via AMPK/Akt/FBXO32 signaling pathway.

IF 2.8 4区 医学 Q3 ENDOCRINOLOGY & METABOLISM
Xiao-Yan Li, Ling-Ling Qian, Ying Wu, Yu-Min Zhang, Shi-Peng Dang, Xiao-Yu Liu, Xu Tang, Cun-Yu Lu, Ru-Xing Wang
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引用次数: 0

Abstract

Background: Advanced glycation end products (AGEs) impair vascular physiology in Diabetes mellitus (DM). However, the underlying mechanisms remain unclear. Vascular large conductance calcium-activated potassium (BK) channels play important roles in coronary arterial function.Purpose: Our study aimed to investigate the regulatory role of AGEs in BK channels.Research Design: Using gavage of vehicle (V, normal saline) or aminoguanidine (A) for 8 weeks, normal and diabetic rats were divided into four groups: C+V group, DM+V group, C+A group, and DM+A group.Study Sample: Coronary arteries from different groups of rats and human coronary smooth muscle cells were used in this study.Data Collection and Analysis: Data were presented as mean ± SEM (standard error of mean). Student's t-test was used to compare data between two groups. One-way ANOVA with post-hoc LSD analysis was used to compare data between multiple groups.Results: Compared to the C+V group, vascular contraction induced by iberiotoxin (IBTX), a BK channel inhibitor, was impaired, and BK channel densities decreased in the DM+V group. However, aminoguanidine administration reduced the impairment. Protein expression of BK-β1, phosphorylation of adenosine 5'-monophosphate-activated protein kinase (AMPK), and protein kinase B (PKB or Akt) were down-regulated, while F-box protein 32 (FBXO32) expression increased in the DM+V group and in high glucose (HG) cultured human coronary smooth muscle cells. Treatment with aminoguanidine in vitro and in vivo could reverse the above protein expression. The effect of aminoguanidine on the improvement of BK channel function by inhibiting the generation of AGEs was reversed by adding MK2206 (Akt inhibitor) or Compound C (AMPK inhibitor) in HG conditions in vitro.Conclusions: AGEs aggravate BK channel dysfunction via the AMPK/Akt/FBXO32 signaling pathway.

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晚期糖基化终产物通过AMPK/Akt/FBXO32信号通路损害冠状动脉BK通道。
背景:晚期糖基化终产物(AGEs)损害糖尿病(DM)的血管生理。然而,其根本机制仍不清楚。血管大电导钙激活钾通道在冠状动脉功能中起着重要作用。目的:我们的研究旨在探讨AGEs在BK通道中的调节作用。研究设计:用赋形剂(V,生理盐水)或氨基胍(A)灌胃8周,将正常和糖尿病大鼠分为四组:C+V组、DM+V组、C+A组和DM+A组。研究样本:本研究使用了来自不同组大鼠的冠状动脉和人冠状动脉平滑肌细胞。数据收集和分析:数据以平均值±SEM(平均值的标准误差)表示。学生t检验用于比较两组之间的数据。单因素方差分析和事后LSD分析用于比较多组之间的数据。结果:与C+V组相比,DM+V组的BK通道抑制剂iberiotoxin(IBTX)诱导的血管收缩受损,BK通道密度降低。然而,氨基胍给药减少了损伤。在DM+V组和高糖(HG)培养的人冠状动脉平滑肌细胞中,BK-β1的蛋白表达、5’-单磷酸腺苷活化蛋白激酶(AMPK)的磷酸化和蛋白激酶B(PKB或Akt)下调,而F-box蛋白32(FBXO32)的表达增加。在体外和体内用氨基胍处理可以逆转上述蛋白质的表达。氨基胍通过抑制AGEs的产生来改善BK通道功能的作用通过在体外HG条件下加入MK2206(Akt抑制剂)或化合物C(AMPK抑制剂)来逆转。结论:AGEs通过AMPK/Akt/FBXO32信号通路加重BK通道功能障碍。
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来源期刊
Diabetes & Vascular Disease Research
Diabetes & Vascular Disease Research ENDOCRINOLOGY & METABOLISM-PERIPHERAL VASCULAR DISEASE
CiteScore
4.40
自引率
0.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: Diabetes & Vascular Disease Research is the first international peer-reviewed journal to unite diabetes and vascular disease in a single title. The journal publishes original papers, research letters and reviews. This journal is a member of the Committee on Publication Ethics (COPE)
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