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钙和蛋白激酶C介导高糖诱导的血管平滑肌细胞中诱导型一氧化氮合酶的抑制。

Calcium and protein kinase C mediate high-glucose-induced inhibition of inducible nitric oxide synthase in vascular smooth muscle cells.

作者信息

Muniyappa R, Srinivas P R, Ram J L, Walsh M F, Sowers J R

机构信息

Department of Physiology, Wayne State University School of Medicine and VA Medical Center, Detroit, Michigan 48201, USA.

出版信息

Hypertension. 1998 Jan;31(1 Pt 2):289-95. doi: 10.1161/01.hyp.31.1.289.

Abstract

Abnormal vascular smooth muscle (VSMC) proliferation is a key feature in diabetes-associated atherosclerotic disease. Since nitric oxide inhibits VSMC tone, migration, adhesion, and proliferation, we examined the effects of high glucose on IL-1beta-induced NO release from VSMCs in culture. Confluent smooth muscle cells, preincubated with either 5 mmol/L (mM) or 20 mmol/L (mM) glucose for 48 hours, were stimulated with IL-1beta. Nitrite was measured in the culture medium after 24 hours. IL-1beta-induced a 15-fold increase in NO production in normal glucose medium. Glucose (10 to 30 mmol/L (mM)) significantly reduced the response to IL-1beta. High glucose (20 mmol/L (mM)) inhibited IL-1beta-evoked NO production by approximately 50%. IL-1beta-stimulated [3H] citrulline-forming activity of the nitric oxide synthase (NOS) was also significantly lower in high-glucose-exposed cells, and this was reflected in diminished cellular levels of NOS protein. To assess the role of protein kinase C (PKC), membrane PKC activity was measured, and glucose (20 mmol/L (mM)) significantly increased it. Immunoblotting of the membranes revealed a glucose-induced increase in the PKC betaII isoform. 1,2-Dioctanoyl-glycerol, a PKC activator, mimicked the high-glucose effect on IL-1beta-induced NO release, while staurosporine, a PKC inhibitor, reversed it. The role of calcium in the glucose-mediated inhibition of cytokine-induced NO release was determined by treatment with BAPTA, an intracellular chelator of calcium. BAPTA partially reversed the inhibitory effects of glucose. Increasing intracellular calcium by A23187, an ionophore or thapsigargin, an inhibitor of endoplasmic reticulum Ca2+-ATPase, significantly decreased IL-1beta-induced NO release and NOS expression. These results indicate that glucose-induced inhibition of IL-1beta-stimulated NO release and NOS expression may be mediated by PKC activation and increased intracellular calcium.

摘要

异常的血管平滑肌(VSMC)增殖是糖尿病相关动脉粥样硬化疾病的一个关键特征。由于一氧化氮可抑制VSMC的张力、迁移、黏附和增殖,我们研究了高糖对培养的VSMC中白细胞介素-1β(IL-1β)诱导的一氧化氮(NO)释放的影响。将融合的平滑肌细胞分别用5 mmol/L(mM)或20 mmol/L(mM)葡萄糖预孵育48小时,然后用IL-1β刺激。24小时后测量培养基中的亚硝酸盐含量。在正常葡萄糖培养基中,IL-1β可使NO生成增加15倍。葡萄糖(10至30 mmol/L(mM))显著降低了对IL-1β的反应。高糖(20 mmol/L(mM))使IL-1β诱发的NO生成抑制了约50%。在高糖处理的细胞中,IL-1β刺激的一氧化氮合酶(NOS)的[3H]瓜氨酸生成活性也显著降低,这反映在细胞中NOS蛋白水平的降低。为了评估蛋白激酶C(PKC)的作用,测量了膜PKC活性,葡萄糖(20 mmol/L(mM))使其显著增加。对膜进行免疫印迹显示,葡萄糖诱导PKCβII亚型增加。PKC激活剂1,2-二辛酰甘油模拟了高糖对IL-1β诱导的NO释放的影响,而PKC抑制剂星形孢菌素则使其逆转。通过用细胞内钙螯合剂BAPTA处理来确定钙在葡萄糖介导的细胞因子诱导的NO释放抑制中的作用。BAPTA部分逆转了葡萄糖的抑制作用。通过离子载体A23187或内质网Ca2+-ATP酶抑制剂毒胡萝卜素增加细胞内钙,显著降低了IL-1β诱导的NO释放和NOS表达。这些结果表明,葡萄糖诱导的对IL-1β刺激的NO释放和NOS表达的抑制可能是由PKC激活和细胞内钙增加介导的。

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