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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >Effects of lipopolysaccharide on low- and high-density cultured rabbit vascular smooth muscle cells: differential modulation of nitric oxide release, ERK1/ERK2 MAP kinase activity, protein tyrosine phosphatase activity, and DNA synthesis
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Effects of lipopolysaccharide on low- and high-density cultured rabbit vascular smooth muscle cells: differential modulation of nitric oxide release, ERK1/ERK2 MAP kinase activity, protein tyrosine phosphatase activity, and DNA synthesis

机译:脂多糖对低密度和高密度培养的兔血管平滑肌细胞的影响:一氧化氮释放,ERK1 / ERK2 MAP激酶活性,蛋白酪氨酸磷酸酶活性和DNA合成的差异调节

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Previous studies have shown that exogenously generated nitric oxide (NO) inhibits smooth muscle cell proliferation. In the present study, we stimulated rabbit vascular smooth muscle cells (RVSMC) with E. coli lipopolysaccharide (LPS), a known inducer of NO synthase transcription, and established a connection between endogenous NO, phosphorylation/dephosphorylation-mediated signaling pathways, and DNA synthesis. Non-confluent RVSMC were cultured with 0, 5, 10, or 100 ng/ml of the endotoxin. NO release was increased by 86.6% (maximum effect) in low-density cell cultures stimulated with 10 ng/ml LPS as compared to non-stimulated controls. Conversely, LPS (5 to 100 ng/ml) did not lead to enhanced NO production in multilayered (high density) RVSMC. DNA synthesis measured by thymidine incorporation showed that LPS was mitogenic only to non-confluent RVSMC; furthermore, the effect was prevented statistically by aminoguanidine (AG), a potent inhibitor of the inducible NO synthase, and oxyhemoglobin, an NO scavenger. Finally, there was a cell density-dependent LPS effect on protein tyrosine phosphatase (PTP) and ERK1/ERK2 mitogen-activated protein (MAP) kinase activities. Short-term transient stimulation of ERK1/ERK2 MAP kinases was maximal at 12 min in non-confluent RVSMC and was prevented by preincubation with AG, whereas PTP activities were inhibited in these cells after 24-h LPS stimulation. Conversely, no significant LPS-mediated changes in kinase or phosphatase activities were observed in high-density cells. LPS-induced NO generation by RVSMC may switch on a cell density-dependent proliferative signaling cascade, which involves the participation of PTP and the ERK1/ERK2 MAP kinases.
机译:先前的研究表明,外源产生的一氧化氮(NO)抑制平滑肌细胞增殖。在本研究中,我们用已知的NO合酶转录诱导物大肠杆菌脂多糖(LPS)刺激了兔血管平滑肌细胞(RVSMC),并建立了内源性NO,磷酸化/去磷酸化介导的信号通路与DNA之间的联系合成。用0、5、10或100 ng / ml的内毒素培养未融合的RVSMC。与未刺激的对照组相比,在用10 ng / ml LPS刺激的低密度细胞培养物中,NO释放增加了86.6%(最大作用)。相反,LPS(5至100 ng / ml)不会导致多层(高密度)RVSMC中NO的产生增加。通过胸苷掺入法测量的DNA合成结果表明,LPS仅对非融合RVSMC有丝分裂作用。此外,通过可诱导的NO合酶的有效抑制剂氨基胍(AG)和NO清除剂氧合血红蛋白从统计学上防止了该作用。最后,对蛋白酪氨酸磷酸酶(PTP)和ERK1 / ERK2丝裂原活化蛋白(MAP)激酶活性具有细胞密度依赖性LPS作用。在不融合的RVSMC中,ERK1 / ERK2 MAP激酶的短期瞬时刺激最大,在12分钟时被AG预孵育阻止,而在24小时LPS刺激后,这些细胞中的PTP活性受到抑制。相反,在高密度细胞中未观察到LPS介导的激酶或磷酸酶活性的显着变化。 RVSMC诱导LPS诱导的NO生成可能会开启依赖细胞密度的增殖信号传导级联反应,其中涉及PTP和ERK1 / ERK2 MAP激酶的参与。

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