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芋螺毒素PIIIA的溶液结构,一种对持续性河豚毒素敏感钠通道的优先抑制剂。

Solution structure of mu-conotoxin PIIIA, a preferential inhibitor of persistent tetrodotoxin-sensitive sodium channels.

作者信息

Nielsen Katherine J, Watson Michael, Adams David J, Hammarström Anna K, Gage Peter W, Hill Justine M, Craik David J, Thomas Linda, Adams Denise, Alewood Paul F, Lewis Richard J

机构信息

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

出版信息

J Biol Chem. 2002 Jul 26;277(30):27247-55. doi: 10.1074/jbc.M201611200. Epub 2002 May 2.

Abstract

Mu-conotoxins are peptide inhibitors of voltage-sensitive sodium channels (VSSCs). Synthetic forms of mu-conotoxins PIIIA and PIIIA-(2-22) were found to inhibit tetrodotoxin (TTX)-sensitive VSSC current but had little effect on TTX-resistant VSSC current in sensory ganglion neurons. In rat brain neurons, these peptides preferentially inhibited the persistent over the transient VSSC current. Radioligand binding assays revealed that PIIIA, PIIIA-(2-22), and mu-conotoxins GIIIB discriminated among TTX-sensitive VSSCs in rat brain, that these and GIIIC discriminated among the corresponding VSSCs in human brain, and GIIIA had low affinity for neuronal VSSCs. (1)H NMR studies found that PIIIA adopts two conformations in solution due to cis/trans isomerization at hydroxyproline 8. The major trans conformation results in a three-dimensional structure that is significantly different from the previously identified conformation of mu-conotoxins GIIIA and GIIIB that selectively target TTX-sensitive muscle VSSCs. Comparison of the structures and activity of PIIIA to muscle-selective mu-conotoxins provides an insight into the structural requirements for inhibition of different TTX-sensitive sodium channels by mu-conotoxins.

摘要

μ-芋螺毒素是电压敏感性钠通道(VSSCs)的肽类抑制剂。已发现合成形式的μ-芋螺毒素PIIIA和PIIIA-(2-22)可抑制河豚毒素(TTX)敏感性VSSC电流,但对感觉神经节神经元中的TTX抗性VSSC电流影响很小。在大鼠脑神经元中,这些肽优先抑制持续性VSSC电流而非瞬时性VSSC电流。放射性配体结合试验表明,PIIIA、PIIIA-(2-22)和μ-芋螺毒素GIIIB可区分大鼠脑中的TTX敏感性VSSCs,这些毒素以及GIIIC可区分人脑中相应的VSSCs,且GIIIA对神经元VSSCs的亲和力较低。核磁共振氢谱(1H NMR)研究发现,由于8位羟脯氨酸处的顺/反异构化,PIIIA在溶液中呈现两种构象。主要的反式构象导致其三维结构与先前鉴定的选择性靶向TTX敏感性肌肉VSSCs的μ-芋螺毒素GIIIA和GIIIB的构象有显著差异。将PIIIA的结构与活性和肌肉选择性μ-芋螺毒素进行比较,有助于深入了解μ-芋螺毒素抑制不同TTX敏感性钠通道的结构要求。

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