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在大肠杆菌中表达富含二硫键的海葵肽 APETx2,该肽是酸感应离子通道 3 的有效阻断剂。

Functional expression in Escherichia coli of the disulfide-rich sea anemone peptide APETx2, a potent blocker of acid-sensing ion channel 3.

机构信息

Institute for Molecular Bioscience, The University of Queensland, Brisbane, QLD 4072, Australia.

出版信息

Mar Drugs. 2012 Jul;10(7):1605-1618. doi: 10.3390/md10071605. Epub 2012 Jul 23.

Abstract

Acid-sensing ion channels (ASICs) are proton-gated sodium channels present in the central and peripheral nervous system of chordates. ASIC3 is highly expressed in sensory neurons and plays an important role in inflammatory and ischemic pain. Thus, specific inhibitors of ASIC3 have the potential to be developed as novel analgesics. APETx2, isolated from the sea anemone Anthopleura elegantissima, is the most potent and selective inhibitor of ASIC3-containing channels. However, the mechanism of action of APETx2 and the molecular basis for its interaction with ASIC3 is not known. In order to assist in characterizing the ASIC3-APETx2 interaction, we developed an efficient and cost-effective Escherichia coli periplasmic expression system for the production of APETx2. NMR studies on uniformly (13)C/(15)N-labelled APETx2 produced in E. coli showed that the recombinant peptide adopts the native conformation. Recombinant APETx2 is equipotent with synthetic APETx2 at inhibiting ASIC3 channels expressed in Xenopus oocytes. Using this system we mutated Phe15 to Ala, which caused a profound loss of APETx2's activity on ASIC3. These findings suggest that this expression system can be used to produce mutant versions of APETx2 in order to facilitate structure-activity relationship studies.

摘要

酸敏离子通道(ASICs)是脊椎动物中枢和外周神经系统中存在的质子门控钠离子通道。ASIC3 在感觉神经元中高度表达,在炎症和缺血性疼痛中发挥重要作用。因此,ASIC3 的特异性抑制剂有可能被开发为新型的镇痛药。APETx2 是从海葵 Anthopleura elegantissima 中分离出来的,是最有效和选择性的 ASIC3 通道抑制剂。然而,APETx2 的作用机制及其与 ASIC3 相互作用的分子基础尚不清楚。为了协助表征 ASIC3-APETx2 相互作用,我们开发了一种高效且具有成本效益的大肠杆菌周质表达系统来生产 APETx2。在大肠杆菌中产生的均一(13)C/(15)N 标记的 APETx2 的 NMR 研究表明,重组肽采用天然构象。重组 APETx2 在抑制表达在非洲爪蟾卵母细胞中的 ASIC3 通道方面与合成的 APETx2 具有同等效力。使用该系统,我们将 Phe15 突变为 Ala,这导致 APETx2 对 ASIC3 的活性显著丧失。这些发现表明,该表达系统可用于产生 APETx2 的突变体版本,以促进结构-活性关系研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7252/3407934/848a2ce4e319/marinedrugs-10-01605-g001.jpg

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