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A requirement of serotonergic p38α mitogen-activated protein kinase for peripheral immune system activation of CNS serotonin uptake and serotonin-linked behaviors

机译:血清素能p38α促分裂原活化蛋白激酶对中枢神经系统5-羟色胺摄取和5-羟色胺相关行为的外周免疫系统激活的要求

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摘要

Alterations in central serotonin (5-hydroxytryptamine, 5-HT) neurotransmission and peripheral immune activation have been linked to multiple neuropsychiatric disorders, including depression, schizophrenia and autism. The antidepressant-sensitive 5-HT transporter (SERT, SLC6A4), a critical determinant of synaptic 5-HT inactivation, can be regulated by pro-inflammatory cytokine signaling. Systemic innate immune system activation via intraperitoneal lipopolysaccharide (LPS) injection rapidly elevates brain SERT activity and 5-HT clearance. Moreover, the pro-inflammatory cytokine interleukin (IL)-1β rapidly stimulates SERT activity in raphe nerve terminal preparations ex vivo, effects that are attenuated by pharmacological p38 MAPK inhibition. To establish a role of serotonergic p38α MAPK signaling in LPS/IL-1β-induced SERT regulation and attendant behavioral responses, we pursued studies in mice that afford conditional elimination of p38α MAPK in 5-HT neurons (p38α5HT−). We found p38α5HT− and control (p38α5HT+) littermates to be indistinguishable in viability and growth and to express equivalent levels of SERT protein and synaptosomal 5-HT transport activity. Consistent with pharmacological studies, however, IL-1β fails to increase SERT activity in midbrain synaptosomes prepared from p38α5HT− animals. Moreover, although LPS elevated plasma corticosterone and central/peripheral pro-inflammatory cytokines in p38α5HT− animals, elevations in midbrain SERT activity were absent nor were changes in depressive and anxiety-like behaviors observed. Our studies support an obligate role of p38α MAPK signaling in 5-HT neurons for the translation of immune activation to SERT regulation and 5-HT-modulated behaviors.
机译:中央5-羟色胺(5-羟色胺,5-HT)神经传递和外周免疫激活的改变与多种神经精神疾病有关,包括抑郁症,精神分裂症和自闭症。抗抑郁药敏感的5-HT转运蛋白(SERT,SLC6A4)是突触5-HT失活的关键决定因素,可以通过促炎性细胞因子信号传导来调节。通过腹膜内脂多糖(LPS)注射进行的系统性先天免疫系统激活迅速提高了大脑的SERT活性和5-HT清除率。此外,促炎性细胞因子白介素(IL)-1β可以快速刺激离体神经末梢制剂中的SERT活性,这种作用被药理学上的p38 MAPK抑制作用减弱。为了建立血清素能性p38αMAPK信号转导在LPS /IL-1β诱导的SERT调节和伴随的行为反应中的作用,我们进行了有条件消除5-HT神经元p38αMAPK(p38α 5HT- sup>)。我们发现p38α 5HT-和对照(p38α 5HT + )同窝幼仔在生存力和生长方面无可区别,并表达同等水平的SERT蛋白和突触体5-HT转运活性。然而,与药理研究一致,IL-1β不能增加p38α 5HT-动物制备的中脑突触体的SERT活性。此外,尽管LPS升高了p38α 5HT-动物的血浆皮质类固醇和中枢/周围促炎细胞因子,但中脑SERT活性却没有升高,抑郁和焦虑样行为也没有变化。我们的研究支持p38αMAPK信号在5-HT神经元中对免疫激活转译为SERT调控和5-HT调节行为的重要作用。

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