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Exogenous H2S Induces Hrd1 S-sulfhydration and Prevents CD36 Translocation via VAMP3 Ubiquitylation in Diabetic Hearts

机译:外源性H2S诱导Hrd1 S硫代化并通过VAMP3泛素化防止CD36易位。

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摘要

Hydrogen sulfide (H S) plays physiological roles in vascular tone regulation, cytoprotection, and ATP synthesis. HMG-CoA reductase degradation protein (Hrd1), an E3 ubiquitin ligase, is involved in protein trafficking. H S may play a role in controlling fatty acid uptake in diabetic cardiomyopathy (DCM) in a manner correlated with modulation of Hrd1 S-sulfhydration; however, this role remains to be elucidated. The aim of the present study was to examine whether H S can attenuate lipid accumulation and to explain the possible mechanisms involved in the regulation of the H S-Hrd1/VAMP3 pathway. Db/db mice and neonatal rat cardiomyocytes treated with high glucose, palmitate and oleate were used as animal and cellular models of type 2 diabetes, respectively. The expression of cystathionine-γ-lyase (CSE), Hrd1, CD36 and VAMP3 was detected by Western blot analysis. In addition, Hrd1 was mutated at Cys115, and Hrd1 S-sulfhydration was examined using an S-sulfhydration assay. VAMP3 ubiquitylation was investigated by immunoprecipitation. Lipid droplet formation was tested by TEM, BODIPY 493/503 staining and oil red O staining. The expression of CSE and Hrd1 was decreased in db/db mice compared to control mice, whereas CD36 and VAMP3 expression was increased. NaHS administration reduced droplet formation, and exogenous H S restored Hrd1 expression, modified S-sulfhydration, and decreased VAMP3 expression in the plasma membrane. Using LC-MS/MS analysis, we identified 85 proteins with decreased ubiquitylation, including 3 vesicle-associated membrane proteins, in the cardiac tissues of model db/db mice compared with NaHS-treated db/db mice. Overexpression of Hrd1 mutated at Cys115 diminished VAMP3 ubiquitylation, whereas it increased CD36 and VAMP3 expression and droplet formation. siRNA-mediated Hrd1 deletion increased the expression of CD36 in the cell membrane. These findings suggested that H S regulates VAMP3 ubiquitylation via Hrd1 S-sulfhydration at Cys115 to prevent CD36 translocation in diabetes.
机译:硫化氢(HS)在血管紧张度调节,细胞保护和ATP合成中起着生理作用。 HMG-CoA还原酶降解蛋白(Hrd1)是E3泛素连接酶,参与蛋白运输。 H S可能以与调节Hrd1 S硫酸化相关的方式在控制糖尿病性心肌病(DCM)中的脂肪酸摄取中发挥作用。但是,这个角色还有待阐明。本研究的目的是检查H S是否能减弱脂质的积累并解释H S-Hrd1 / VAMP3途径调控中可能的机制。用高糖,棕榈酸酯和油酸酯处理的Db / db小鼠和新生大鼠心肌细胞分别用作2型糖尿病的动物和细胞模型。 Western blot分析检测胱硫醚γ-裂合酶(CSE),Hrd1,CD36和VAMP3的表达。另外,将Hrd1在Cys115处突变,并使用S-硫酸化测定法检查Hrd1 S-硫酸化。通过免疫沉淀研究了VAMP3的泛素化。通过TEM,BODIPY 493/503染色和油红O染色测试脂质液滴的形成。与对照小鼠相比,db / db小鼠中CSE和Hrd1的表达降低,而CD36和VAMP3的表达增加。施用NaHS减少了液滴的形成,外源性H S恢复了Hrd1表达,修饰了S硫磺化,并降低了质膜中的VAMP3表达。使用LC-MS / MS分析,与经NaHS处理的db / db小鼠相比,模型db / db小鼠的心脏组织中鉴定出85种泛素化程度降低的蛋白,包括3种与囊泡相关的膜蛋白。在Cys115处突变的Hrd1的过表达减少了VAMP3的泛素化,而增加了CD36和VAMP3的表达以及液滴的形成。 siRNA介导的Hrd1缺失增加了细胞膜中CD36的表达。这些发现表明,Hs通过在Cys115处通过Hrd1S巯基化作用来调节VAMP3泛素化,从而防止CD36易位。

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