Hydrogen sulfide metabolism regulates endothelial solute barrier function

多硫化物 势垒函数 化学 内生 胱硫醚β合酶 内皮 细胞生物学 体内 生物物理学 硫化氢 生物化学 胱硫醚γ裂解酶 磁导率 生物 内分泌学 硫黄 半胱氨酸 物理化学 生物技术 有机化学 电解质 电极
作者
Shuai Yuan,Sibile Pardue,Xinggui Shen,J. Steven Alexander,A. Wayne Orr,Christopher G. Kevil
出处
期刊:Redox biology [Elsevier]
卷期号:9: 157-166 被引量:58
标识
DOI:10.1016/j.redox.2016.08.004
摘要

Hydrogen sulfide (H2S) is an important gaseous signaling molecule in the cardiovascular system. In addition to free H2S, H2S can be oxidized to polysulfide which can be biologically active. Since the impact of H2S on endothelial solute barrier function is not known, we sought to determine whether H2S and its various metabolites affect endothelial permeability. In vitro permeability was evaluated using albumin flux and transendothelial electrical resistance. Different H2S donors were used to examine the effects of exogenous H2S. To evaluate the role of endogenous H2S, mouse aortic endothelial cells (MAECs) were isolated from wild type mice and mice lacking cystathionine γ-lyase (CSE), a predominant source of H2S in endothelial cells. In vivo permeability was evaluated using the Miles assay. We observed that polysulfide donors induced rapid albumin flux across endothelium. Comparatively, free sulfide donors increased permeability only with higher concentrations and at later time points. Increased solute permeability was associated with disruption of endothelial junction proteins claudin 5 and VE-cadherin, along with enhanced actin stress fiber formation. Importantly, sulfide donors that increase permeability elicited a preferential increase in polysulfide levels within endothelium. Similarly, CSE deficient MAECs showed enhanced solute barrier function along with reduced endogenous bound sulfane sulfur. CSE siRNA knockdown also enhanced endothelial junction structures with increased claudin 5 protein expression. In vivo, CSE genetic deficiency significantly blunted VEGF induced hyperpermeability revealing an important role of the enzyme for barrier function. In summary, endothelial solute permeability is critically regulated via exogenous and endogenous sulfide bioavailability with a prominent role of polysulfides.

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