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Mouse muscle denervation increases expression of an α7 nicotinic receptor with unusual pharmacology

机译:小鼠肌肉去神经作用以异常的药理作用增加α7烟碱受体的表达

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摘要

Neuronal nicotinic α7 subunits have been found in chick and rat skeletal muscle during development and denervation. In the present study, reverse transcriptase-polymerase chain reaction was used to detect α7 subunit mRNA in denervated mouse muscle. To determine whether the α7 subunit forms functional nicotinic acetylcholine receptors (nAChRs) in muscle, choline was used to induce a membrane depolarization because choline has been considered a specific agonist of α7-containing (α7*) nAChRs. We found, however, that choline (3–10 mm) also weakly activates muscle nAChRs. After inhibiting muscle nAChRs with a specific muscle nAChR inhibitor, α-conotoxin GI (αCTxGI), choline was used to activate the α7* nAChRs on muscle selectively. Four weeks after denervation, rapid application of choline (10 mm) elicited a substantial depolarization in the presence of αCTxGI (0.1 µm). This component of the depolarization was never present in denervated muscles obtained from mutant mice lacking the α7 subunit (i.e. α7-null mice). The depolarization component that is resistant to αCTxGI was antagonized by pancuronium (3–10 µm) and by a 4-oxystilbene derivative (F3, 0.1–0.5 µm) at concentrations considered highly specific for α7* nAChRs. Another selective α7 antagonist, methyllycaconitine (0.05–5 µm), did not strongly inhibit this choline-induced depolarization. Furthermore, the choline-sensitive nAChRs showed little desensitization over 10 s of application with choline (10–30 mm). These results indicate that functional α7* nAChRs are significantly present on denervated muscle, and that these receptors display unusual functional and pharmacological characteristics.
机译:在发育和去神经过程中,在鸡和大鼠骨骼肌中发现了神经元烟碱α7亚基。在本研究中,逆转录聚合酶链反应用于检测失神经小鼠肌肉中的α7亚基mRNA。为了确定α7亚基是否在肌肉中形成功能性烟碱乙酰胆碱受体(nAChRs),将胆碱用于引起膜去极化,因为胆碱被认为是含α7(α7*)nAChRs的特异性激动剂。然而,我们发现胆碱(3–10 mm)也弱激活了肌肉nAChRs。用特定的肌肉nAChR抑制剂α-芋螺毒素GI(αCTxGI)抑制肌肉nAChRs后,胆碱被用于选择性激活肌肉上的α7* nAChRs。去神经后四周,在存在αCTxGI(0.1 µm)的情况下,快速应用胆碱(10 mm)引起了显着的去极化。从缺乏α7亚基的突变小鼠(即α7无效的小鼠)获得的神经支配的肌肉中从来没有这种去极化的成分。潘库溴铵(3–10 µm)和4-氧化二苯乙烯衍生物(F3,0.1–0.5 µm)在被认为对α7* nAChRs高度特异性的浓度下拮抗对αCTxGI的抗极化成分。另一种选择性的α7拮抗剂甲基甘可尼丁(0.05-5 µm)不能强烈抑制胆碱引起的去极化。此外,对胆碱敏感的nAChRs在用胆碱(10–30 mm)施用10 s后几乎没有脱敏。这些结果表明在失神经的肌肉上明显存在功能性α7* nAChRs,并且这些受体表现出不同寻常的功能和药理特性。

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