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首页> 外文期刊>International immunopharmacology >The acid sphingomyelinase inhibitors block interferon-alpha-induced serotonin uptake via a COX-2/Akt/ERK/STAT-dependent pathway in T cells.
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The acid sphingomyelinase inhibitors block interferon-alpha-induced serotonin uptake via a COX-2/Akt/ERK/STAT-dependent pathway in T cells.

机译:酸鞘磷脂酶抑制剂阻止干扰素-α诱导的血清素吸收通过T细胞的COX-2 / AKT / ERK / Stat依赖性途径。

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摘要

Sphingomyelinase (SMase) regulates an activation of the sphingomyelin cycle. Recent studies have shown that it is a novel modulator of monoamine receptor and transporter functions; however, its mechanisms are not fully understood. Our previous studies have found that interferon-alpha (IFN-alpha) up-regulates serotonin (5-HT) transporter expression and induces 5-HT uptake via an extracellular signal-regulated kinase (ERK)1/2-dependent pathway in T cells, which is blocked by a selective 5-HT transporter inhibitor fluoxetine. In the present study, we further investigated the roles of various SMase inhibitors in IFN-alpha-induced 5-HT uptake, including sphingolactone-24 (sph24) for neutral SMase or tricyclodecan-9-yl-xanthogenate (D609) for acid SMase. Pretreatments with Sph24 and D609 inhibited IFN-alpha-induced 5-HT uptake, and activation of ERK1/2 and signal transducer and transactivator (STAT) 1 and STAT3. The elevated protein levels of pro-inflammatory enzyme cycloxygenase (COX)-2 were observed upon IFN-alpha stimulation. The COX-2 inhibitor celecoxib blocked IFN-alpha-induced COX-2 expression, 5-HT uptake and activation of Akt, ERK and STAT. Moreover, a PI3K/Akt inhibitor Wortamannin blocked IFN-alpha-induced 5-HT uptake and activation of Akt and ERK. D609 also blocked IFN-alpha-induced COX-2 and Akt activation. Contrarily, sph24 did not result in these effects. Furthermore, fluoxetine as an acid SMase inhibitor lowered IFN-alpha-induced SMase activity as well as attenuated COX-2, Akt, ERK, and STAT activation. These results suggest that inhibiting SMase attenuates IFN-alpha-induced ERK and STAT activation to regulate 5-HT uptake. Moreover, inhibition of COX-2 induction and an Akt-dependent pathway are involved in IFN-alpha-induced 5-HT uptake by the blockade of acid SMase activity.
机译:鞘磷脂酶(SMASE)调节鞘磷脂循环的活化。最近的研究表明,它是单胺受体和运输功能的新型调节剂;但是,它的机制尚不完全理解。我们以前的研究发现,干扰素-α(IFN-α)上调血清素(5-HT)转运蛋白表达,并通过细胞外信号调节激酶(ERK)1/2依赖于T细胞中的5-HT吸收,其被选择性5-HT转运蛋白氟氧氟沙汀封锁。在本研究中,我们进一步研究了各种SMASE抑制剂在IFN-α诱导的5-HT摄取中的作用,包括用于酸液的中性SMASE或TRICICLODECAN-9-YL- X原烷酸酯(D609)的鞘内酯-24(SPH24)。具有SPH24和D609的预处理抑制了IFN-α诱导的5-HT摄取,并激活ERK1 / 2和信号传感器和异椎动轴(STAT)1和STAT3。在IFN-α刺激后观察到促炎酶环氧酶(COX)-2的升高的蛋白质水平。 COX-2抑制剂Celecoxib阻断IFN-α诱导的COX-2表达,5-HT吸收和AKT,ERK和统计的激活。此外,PI3K / AKT抑制剂Wortamannin阻断IFN-α-诱导的5-HT吸收和AKT和ERK的激活。 D609还阻止了IFN-α诱导的COX-2和AKT激活。相反,SPH24没有导致这些效果。此外,氟西汀作为酸性血液抑制剂降低了IFN-α-诱导的SMASE活性以及减毒的COX-2,AKT,ERK和统计活化。这些结果表明,抑制SMASE衰减IFN-α诱导的ERK和STAT激活以调节5-HT摄取。此外,通过阻断酸性Smase活性抑制Cox-2诱导和依赖性途径的抑制和依赖于Akt依赖性途径。

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