Kamoun Walid S, Karaa Amel, Kresge Nicole, Merkel Sandra M, Korneszczuk Katarzyna, Clemens Mark G
Department of Biology, University of North Carolina, Charlotte, NC 28223, USA.
Hepatology. 2006 Jan;43(1):182-90. doi: 10.1002/hep.20940.
During endotoxemia, liver microcirculation disruption is characterized by a hypersensitivity to the constrictor effects of endothelin 1 (ET-1). The shift of ET-1-mediated effects toward vasoconstriction may result from depressed ET-1-mediated vasodilation through decreased ET-1-induced nitric oxide (NO) production. We have previously shown that lipopolysaccharide (LPS) pretreatment abrogates ET-1-induced endothelial nitric oxide synthase (eNOS) translocation, but its effects on eNOS activation are yet to be determined. Our aim was to assess the effects of LPS on ET-1-mediated eNOS activation in hepatic sinusoidal endothelial cells (SECs) and to investigate the molecular mechanisms involved. SECs were treated with LPS (100 ng/mL) for 6 hours followed by 30 minutes ET-1 (10 nmol/L) stimulation. LPS significantly inhibited ET-1-mediated eNOS activation. This inhibition was associated with upregulation of Caveolin-1 (CAV-1) and a shift in ET-1-mediated eNOS phosphorylation from an activation (Ser1177) to an inhibition (Thr495). LPS treatment has been shown to induce ET-1 expression and secretion from endothelial cells. We therefore investigated the role of endogenous ET-1 in the inhibition of ET-1 activation of eNOS after LPS. Antagonizing ET-1 effects and blocking its activation in LPS pretreated SECs decreased the LPS-induced overexpression of CAV-1 as well as the inhibition of ET-1-induced NOS activity. Furthermore, 6 hours of ET-1 treatment exerted the same effects on eNOS activity, phosphorylation, and CAV-1 expression as LPS treatment. In conclusion, LPS-induced suppression of ET-1-mediated eNOS activation is ET-1 dependent and suggest a pivotal role of CAV-1 in eNOS induction inhibition under stress.
在内毒素血症期间,肝脏微循环破坏的特征是对内皮素1(ET-1)的收缩作用高度敏感。ET-1介导的效应向血管收缩的转变可能是由于ET-1诱导的一氧化氮(NO)生成减少导致ET-1介导的血管舒张作用减弱。我们之前已经表明,脂多糖(LPS)预处理可消除ET-1诱导的内皮型一氧化氮合酶(eNOS)易位,但其对eNOS激活的影响尚待确定。我们的目的是评估LPS对肝窦内皮细胞(SECs)中ET-1介导的eNOS激活的影响,并研究其中涉及的分子机制。将SECs用LPS(100 ng/mL)处理6小时,然后用ET-1(10 nmol/L)刺激30分钟。LPS显著抑制ET-1介导的eNOS激活。这种抑制与小窝蛋白-1(CAV-1)的上调以及ET-1介导的eNOS磷酸化从激活(Ser1177)向抑制(Thr495)的转变有关。已表明LPS处理可诱导内皮细胞表达和分泌ET-1。因此,我们研究了内源性ET-1在LPS后抑制ET-1激活eNOS中的作用。在LPS预处理的SECs中拮抗ET-1的作用并阻断其激活可降低LPS诱导的CAV-1过表达以及对ET-1诱导的NOS活性的抑制。此外,6小时的ET-1处理对eNOS活性、磷酸化和CAV-1表达产生与LPS处理相同的影响。总之,LPS诱导的对ET-1介导的eNOS激活的抑制是ET-1依赖性的,并提示CAV-1在应激下抑制eNOS诱导中起关键作用。