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μ 阿片受体变异体 1B2 和 1C1 的独特 C 末端位点的磷酸化影响慢性吗啡后它们与 Gs 的结合。

Phosphorylation of unique C-terminal sites of the mu-opioid receptor variants 1B2 and 1C1 influences their Gs association following chronic morphine.

机构信息

Department of Obstetrics and Gynecology, State University of New York, Downstate Medical Center, Brooklyn, New York, USA.

出版信息

J Neurochem. 2020 Feb;152(4):449-467. doi: 10.1111/jnc.14863. Epub 2019 Oct 20.

Abstract

We recently demonstrated in rat spinal cord that a regimen of escalating doses of systemic morphine, analogous to regimens used clinically for chronic pain management, selectively up-regulates the mu-opioid receptor (MOR) splice variants MOR-1B2 and MOR-1C1 mRNA and functional protein. This study investigated the potential relevance of up-regulating MOR-1B2 and MOR-1C1 to the ability of chronic morphine to shift MOR signaling from predominantly G /G inhibitory to G stimulatory. Specifically, we tested the hypotheses that chronic morphine induces phosphorylation of carboxyl terminal sites unique to MOR-1B2 and MOR-1C1, and that this phosphorylation is causally related to augmented association of these variants with G α. Hypotheses were validated by (i) abolition of the chronic morphine-induced increment in MOR-1C1 and MOR-1B2 association with G α by inhibitors of protein kinase A and Casein kinase 2, respectively; (ii) failure of chronic morphine to augment MOR variant G α interactions in Chinese hamster ovary cells transiently transfected with either rat MOR-1C1 or MOR-1B2 in which targeted protein kinase A and Casein kinase 2 serine phosphorylation sites, respectively, were mutated to alanine; (iii) abrogation of chronic morphine-induced augmented MOR G α association in spinal cord of male rats following intrathecal administration of dicer substrate small interfering RNAs targeting MOR-1B2/MOR-1C1 mRNA. The ability of chronic morphine to not only up-regulate-specific MOR variants but also their carboxyl terminal phosphorylation and consequent augmented association with G α may represent a novel component of opioid tolerance mechanisms, suggesting novel potential targets for tolerance abatement.

摘要

我们最近在大鼠脊髓中证明,类似于临床上用于慢性疼痛管理的方案,递增剂量的全身吗啡方案选择性地上调μ-阿片受体(MOR)剪接变体 MOR-1B2 和 MOR-1C1 mRNA 和功能蛋白。本研究探讨了上调 MOR-1B2 和 MOR-1C1 与慢性吗啡将 MOR 信号从主要 G / G 抑制转变为 G 刺激的能力的潜在相关性。具体而言,我们测试了以下假设:慢性吗啡诱导独特于 MOR-1B2 和 MOR-1C1 的羧基末端位点磷酸化,并且这种磷酸化与这些变体与 Gα的增强关联因果相关。通过以下方法验证了假设:(i)分别通过蛋白激酶 A 和酪蛋白激酶 2 的抑制剂消除慢性吗啡诱导的 MOR-1C1 和 MOR-1B2 与 Gα的关联增加;(ii)慢性吗啡不能增加中国仓鼠卵巢细胞中 MOR 变体 Gα相互作用,这些细胞瞬时转染了大鼠 MOR-1C1 或 MOR-1B2,其中靶向蛋白激酶 A 和酪蛋白激酶 2 的丝氨酸磷酸化位点分别突变为丙氨酸;(iii)鞘内给予针对 MOR-1B2/MOR-1C1 mRNA 的 dicer 底物小干扰 RNA 后,雄性大鼠脊髓中慢性吗啡诱导的增强的 MOR Gα关联被消除。慢性吗啡不仅能够上调特定的 MOR 变体,还能够上调其羧基末端磷酸化,从而增强与 Gα的关联,这可能代表阿片类药物耐受机制的一个新组成部分,提示耐受缓解的新潜在靶点。

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