Van Wagoner Ryan M, Jacobsen Richard B, Olivera Baldomero M, Ireland Chris M
Department of Medicinal Chemistry, University of Utah, Salt Lake City, Utah 84112, USA.
Biochemistry. 2003 Jun 3;42(21):6353-62. doi: 10.1021/bi0272757.
A novel inhibitor of nicotinic acetylcholine receptors (nAChRs), psi-conotoxin Piiif, was isolated from the venom of Conus purpurascens and found to have the sequence GOOCCLYGSCROFOGCYNALCCRK-NH2. The sequence is highly homologous to that of psi-conotoxin Piiie, a previously identified noncompetitive inhibitor of Torpedo electroplax nAChR, also isolated from C. purpurascens. Both psi-conotoxins block Torpedo and mouse nicotinic acetylcholine receptors (nAChRs), but psi-Piiif is less potent by a factor of 10(1)-10(2). A high-resolution structure of psi-Piiif was determined by NMR and molecular modeling calculations. Psi-Piiif analogues containing [(13)C]-labeled cysteine at selected positions were synthesized to resolve spectral overlap of Cys side chain proton signals. The structures are well-converged, with backbone atom position RMSDs of 0.21 A for the main body of the peptide between residues 4 and 22 and 0.47 A for all residues. The overall backbone conformation is closely similar to psi-Piiie, the main difference being in the degree of conformational disorder at the two termini. Psi-Piiie and psi-Piiif have similar locations of positive charge density, although psi-Piiif has a lower overall charge. One disulfide bridge of psi-Piiif appears to undergo dynamic conformational fluctuations based on both the model and on experimental observation. Chimeras in which the three intercysteine loops were swapped between psi-Piiie and psi-Piiif were tested for inhibitory activity against Torpedo nAChRs. The third loop, which contains no charged residues in either peptide, is the prime determinant of potency in these psi-conotoxins.
一种新型烟碱型乙酰胆碱受体(nAChRs)抑制剂——ψ-芋螺毒素Piiif,从紫色芋螺的毒液中分离得到,其序列为GOOCCLYGSCROFOGCYNALCCRK-NH2。该序列与ψ-芋螺毒素Piiie高度同源,后者是先前鉴定的电鳐电板nAChR的非竞争性抑制剂,也从紫色芋螺中分离得到。两种ψ-芋螺毒素均能阻断电鳐和小鼠的烟碱型乙酰胆碱受体(nAChRs),但ψ-Piiif的效力低10(1)-10(2)倍。通过核磁共振(NMR)和分子模拟计算确定了ψ-Piiif的高分辨率结构。合成了在选定位置含有[(13)C]标记半胱氨酸的ψ-Piiif类似物,以解决半胱氨酸侧链质子信号的光谱重叠问题。这些结构高度收敛一致,肽段主体中第4至22位残基的主链原子位置均方根偏差(RMSD)为0.21 Å,所有残基的RMSD为0.47 Å。整体主链构象与ψ-Piiie非常相似,主要区别在于两个末端的构象无序程度。ψ-Piiie和ψ-Piiif的正电荷密度位置相似,尽管ψ-Piiif的总电荷较低。基于模型和实验观察,ψ-Piiif的一个二硫键似乎经历动态构象波动。对在ψ-Piiie和ψ-Piiif之间交换了三个半胱氨酸间环的嵌合体进行了针对电鳐nAChRs的抑制活性测试。在这两种肽中均不包含带电残基的第三个环,是这些ψ-芋螺毒素效力的主要决定因素。