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通过甲氧基乙氧基修饰的硫代磷酸化反义寡核苷酸对大鼠配体门控离子通道P2X3功能的特异性抑制

Specific inhibition of the rat ligand-gated ion channel P2X3 function via methoxyethoxy-modified phosphorothioated antisense oligonucleotides.

作者信息

Dorn G, Abdel'Al S, Natt F J, Weiler J, Hall J, Meigel I, Mosbacher J, Wishart W

机构信息

Functional Genomics, Novartis Pharma AG, Basel, Switzerland.

出版信息

Antisense Nucleic Acid Drug Dev. 2001 Jun;11(3):165-74. doi: 10.1089/108729001300338690.

Abstract

P2X3 is one receptor of a family of seven ligand-gated ion channels responding to purines. Increasing evidence indicates its involvement in neuronal signaling and in pain. However, there is currently no selective inhibitor known for this subtype. In order to obtain such a specific inhibitor, a variety of antisense oligonucleotides (ASO) against rat P2X3 was tested, and dose-dependent, sequence-specific downregulation of the rat P2X3 receptor (expressed in a Chinese hamster ovary cell line [CHO-K1]) on the mRNA, protein, and functional levels was observed. Using real-time quantitative PCR, a dose-dependent downregulation of P2X3 mRNA by ASO, as compared with untreated and mismatch controls, was demonstrated. Subsequently, downregulation by the two most potent ASO was confirmed at the protein level by Western blot. Sequence specificity was shown by titration of mismatches to the original selected oligonucleotide, and this correlated with progressive loss of P2X3 inhibition. The functional response of the P2X3 receptor was examined using whole-cell voltage clamping. Upon application of 10 microM of a nonspecific agonist, alpha,beta-methylene-ATP (alphabeta meATP), pretreatment with increasing amounts of the most active ASO 5037 correlated with a decrease in depolarization. The ability to specifically downregulate the P2X3 receptor by ASO treatment will allow investigation of the biologic role of this receptor in neuronal tissues and eventually in in vivo models of chronic pain.

摘要

P2X3是嘌呤门控离子通道家族七个成员之一的一种受体。越来越多的证据表明其参与神经元信号传导和疼痛过程。然而,目前尚无已知的针对该亚型的选择性抑制剂。为了获得这种特异性抑制剂,对多种针对大鼠P2X3的反义寡核苷酸(ASO)进行了测试,观察到在mRNA、蛋白质和功能水平上对大鼠P2X3受体(在中国仓鼠卵巢细胞系[CHO-K1]中表达)呈剂量依赖性、序列特异性下调。使用实时定量PCR,与未处理和错配对照相比,证明了ASO对P2X3 mRNA的剂量依赖性下调。随后,通过蛋白质印迹在蛋白质水平上证实了两种最有效的ASO的下调作用。通过对原始选定寡核苷酸错配进行滴定显示了序列特异性,这与P2X3抑制作用的逐渐丧失相关。使用全细胞电压钳检测P2X3受体的功能反应。施加10微摩尔非特异性激动剂α,β-亚甲基三磷酸腺苷(αβmeATP)后,用增加量的最活跃ASO 5037预处理与去极化的降低相关。通过ASO处理特异性下调P2X3受体的能力将有助于研究该受体在神经元组织以及最终在慢性疼痛体内模型中的生物学作用。

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