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蛋白激酶C介导脂多糖和佛波醇诱导的心肌细胞一氧化氮合酶活性及收缩功能减退。

PKC mediates LPS- and phorbol-induced cardiac cell nitric oxide synthase activity and hypocontractility.

作者信息

McKenna T M, Li S, Tao S

机构信息

Septic Shock Research Program, Naval Medical Research Institute, Bethesda, Maryland 20889, USA.

出版信息

Am J Physiol. 1995 Dec;269(6 Pt 2):H1891-8. doi: 10.1152/ajpheart.1995.269.6.H1891.

Abstract

Lipopolysaccharide (LPS) treatment impairs cardiac myocyte contractility in a nitric oxide synthase (NOS)-dependent manner. The objective of this study was to assess whether protein kinase C (PKC) transduces the LPS signal into an enhanced NOS activity in rat cardiac myocytes. LPS (100 ng/ml) stimulated myocyte PKC activity, inducible NOS (iNOS) expression, and NOS activity in a time- and protein synthesis-dependent fashion. Directly activating PKC with beta-phorbol 12,13-dibutyrate (beta-PDB) also induced myocyte iNOS synthesis and NOS activity and reduced electrically stimulated contractility, while the inactive alpha-PDB was ineffectual. Contractility could be restored to beta-PDB-incubated cells by superfusion with the NOS inhibitor N omega-nitro-L-arginine methyl ester. PKC blockade with sphingosine, chelerythrine, or calphostin-C precluded LPS- and beta-PDB-induced increases in NOS activity and protected contractility. Depletion of PKC by 18 h of incubation with beta-PDB in the presence of chelerythrine also blocked acquisition of enhanced NOS activity and contractile dysfunction when the myocytes were subsequently exposed to LPS. These findings suggest that PKC is a significant intracellular mediator for the effects of LPS on cardiac cell NOS activity and contractile function.

摘要

脂多糖(LPS)处理以一氧化氮合酶(NOS)依赖的方式损害心肌细胞的收缩性。本研究的目的是评估蛋白激酶C(PKC)是否将LPS信号转导为大鼠心肌细胞中增强的NOS活性。LPS(100 ng/ml)以时间和蛋白质合成依赖的方式刺激心肌细胞PKC活性、诱导型NOS(iNOS)表达和NOS活性。用β-佛波醇12,13-二丁酸酯(β-PDB)直接激活PKC也可诱导心肌细胞iNOS合成和NOS活性,并降低电刺激的收缩性,而无活性的α-PDB则无效。通过用NOS抑制剂Nω-硝基-L-精氨酸甲酯进行灌流,可使β-PDB孵育的细胞的收缩性恢复。用鞘氨醇、白屈菜红碱或钙泊三醇-C阻断PKC可防止LPS和β-PDB诱导的NOS活性增加,并保护收缩性。在白屈菜红碱存在下,用β-PDB孵育18小时使PKC耗竭,当心肌细胞随后暴露于LPS时,也可阻断增强的NOS活性的获得和收缩功能障碍。这些发现表明,PKC是LPS对心脏细胞NOS活性和收缩功能影响的重要细胞内介质。

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