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首页> 外文期刊>The journal of pain: official journal of the American Pain Society >Acute pain increases phosphorylation of DCLK-long in the Edinger-Westphal nucleus but not in the hypothalamic paraventricular nucleus of the rat.
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Acute pain increases phosphorylation of DCLK-long in the Edinger-Westphal nucleus but not in the hypothalamic paraventricular nucleus of the rat.

机译:急性疼痛会增加爱丁格-威斯特法尔核中DCLK-long的磷酸化,但不会增加大鼠下丘脑室旁核中的DCLK-磷酸化。

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摘要

The doublecortin-like kinase (DCLK) gene is crucially involved in neuronal plasticity and microtubule-guided retrograde transport of signaling molecules. We have explored the possibility that DCLK is involved in pain-induced signaling events in adult male Wistar rats. Our results show that both DCLK-short and DCLK-long splice variants are present in the cell body and proximal dendrites of neurons in stress-related nuclei, ie, the paraventricular nucleus of the hypothalamus (PVN) and the non-preganglionic Edinger-Westphal nucleus (npEW) in the rostroventral periaqueductal grey. We found that DCLK-long but not DCLK-short is phosphorylated in its serine/proline-rich domain. Furthermore, we demonstrate that phosphorylation of DCLK-long in the npEW is increased by acute pain, whereas DCLK-long phosphorylation in the PVN remains unaffected. This is the first report revealing that DCLK isoforms in the PVN and npEW occur in the adult mammalian brain and that pain differentially affects DCLK-long-mediated neuronal plasticity in these 2 stress-sensitive brain centers. PERSPECTIVE: Pain is a burden for society and the individual, and although the mechanisms underlying pain are relatively well known, its treatment remains difficult and incomplete. Pain stress can lead to diseases like chronic pain and depression. The differential DCLK-phosphorylation in stress-sensitive brain areas is a potential novel therapeutic target in pain research.
机译:Doublecortin样激酶(DCLK)基因与神经元可塑性和信号分子的微管引导逆行运输至关重要。我们已经探索了DCLK参与成年雄性Wistar大鼠疼痛引起的信号传导事件的可能性。我们的结果表明,DCLK短和DCLK长的剪接变体均存在于应激相关核(即下丘脑的室旁核(PVN)和非节前性爱丁格-韦斯特法尔氏体)的神经元的细胞体和近端树突中。核(npEW)在腹腔导水管周围呈灰色。我们发现DCLK-长而不是DCLK-短在其富含丝氨酸/脯氨酸的域中被磷酸化。此外,我们证明急性疼痛会增加npEW中DCLK长的磷酸化,而PVN中DCLK长的磷酸化仍然不受影响。这是第一份报道,揭示了成年哺乳动物脑中存在PVN和npEW中的DCLK亚型,并且疼痛在这两个压力敏感的脑中枢神经元可塑性差异地影响了DCLK长时间介导的神经元可塑性。观点:疼痛是社会和个人的负担,尽管引起疼痛的机理相对众所周知,但疼痛的治疗仍然困难且不完整。疼痛可能导致慢性疼痛和抑郁等疾病。压力敏感的大脑区域中的差分DCLK磷酸化是疼痛研究中潜在的新型治疗靶标。

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