Sabatier J M, Zerrouk H, Darbon H, Mabrouk K, Benslimane A, Rochat H, Martin-Eauclaire M F, Van Rietschoten J
Laboratoire de Biochimie, CNRS URA 1455, Faculté de Médecine Nord, Marseille, France.
Biochemistry. 1993 Mar 23;32(11):2763-70. doi: 10.1021/bi00062a005.
The venom of the scorpion Androctonus mauretanicus mauretanicus contains a toxin, P05, which is structurally and functionally similar to scorpion leiurotoxin I (87% sequence identity), a blocker of the apamin-sensitive Ca(2+)-activated K+ channels. It is a 31-residue polypeptide cross-linked by three disulfide bridges. A C-terminal carboxyl-amidated analog of P05 (sP05-NH2) was chemically synthesized by the solid-phase technique and fully characterized. Toxicity assays in vivo established that sP05-NH2, like native P05, is a potent and lethal neurotoxic agent in mice (LD50 of 20 ng per mouse). Pharmacological assays in vitro however showed that, unlike P05 which has a binding affinity of 2 x 10(-11) M, sP05-NH2 apparently binds irreversibly to the apamin receptor. Iodination at the C-terminal His gave diiodo-sP05-NH2, which had a binding affinity similar to that of native P05. The disulfide bridge pairings were chemically determined for sP05-NH2 and thereby deduced for P05 and leiurotoxin I: linkages were between Cys3 and Cys21, Cys8 and Cys26, and Cys12 and Cys28. Molecular dynamics refinement of P05 also using data from leiurotoxin I suggests that P05 is mainly composed of a double-stranded, antiparallel beta-sheet (from Leu18 to Val29) linked to an alpha-helix (from Arg6 to Gly16) by two disulfides (Cys8-Cys26 and Cys12-Cys28) and to an extended fragment (from Thr1 to Leu5) by the third disulfide (Cys3-Cys21). In agreement with the model, circular dichroism analysis of sP05-NH2 showed that the toxin structure is highly rigid.(ABSTRACT TRUNCATED AT 250 WORDS)
摩洛哥杀人蝎毒液中含有一种毒素P05,其结构和功能与蝎氯毒素I相似(序列同一性为87%),后者是蜂毒明肽敏感的Ca(2+)激活K+通道的阻断剂。它是由三个二硫键交联的31个氨基酸残基的多肽。通过固相技术化学合成了P05的C端羧基酰胺化类似物(sP05-NH2)并进行了全面表征。体内毒性试验表明,sP05-NH2与天然P05一样,是小鼠体内一种强效致命的神经毒剂(每只小鼠的LD50为20 ng)。然而,体外药理学试验表明,与具有2×10(-11) M结合亲和力的P05不同,sP05-NH2显然与蜂毒明肽受体不可逆结合。在C端His处碘化得到二碘-sP05-NH2,其结合亲和力与天然P05相似。通过化学方法确定了sP05-NH2的二硫键配对,并由此推断出P05和氯毒素I的二硫键配对:连接分别为Cys3与Cys21、Cys8与Cys26以及Cys12与Cys28。利用来自氯毒素I的数据对P05进行分子动力学优化表明,P05主要由一条双链反平行β折叠(从Leu18到Val29)组成,通过两个二硫键(Cys8-Cys26和Cys12-Cys28)与一个α螺旋(从Arg6到Gly16)相连,并通过第三个二硫键(Cys3-Cys21)与一个延伸片段(从Thr1到Leu5)相连。与该模型一致,sP05-NH2的圆二色性分析表明毒素结构高度刚性。(摘要截短于250字)