Zhu Qi, Liang Songping, Martin Loïc, Gasparini Sylvaine, Ménez André, Vita Claudio
College of Life Sciences, Peking University, Beijing, 100871, P. R. China.
Biochemistry. 2002 Sep 24;41(38):11488-94. doi: 10.1021/bi026136m.
The aim of this study is to investigate the contribution of each disulfide bond in the folding and function of leiurotoxin I, a short scorpion toxin that blocks small conductance K(+) channels. The structure of leiurotoxin I contains a motif conserved in all scorpion toxins, formed by a helix and a double-stranded beta-sheet and stabilized by three disulfide bridges. We synthesized three analogues, each presenting two alpha-aminobutyric acid (Abu) moieties replacing two bridged cysteine residues: LeTx1 ([Abu 3,21] Leiurotoxin I), LeTx2 ([Abu 8,26] Leiurotoxin I), and LeTx3 ([Abu 12,28] Leiurotoxin I). All three analogues fold into a major product containing two native disulfide bonds, while LeTx3 forms an additional isomer, containing non-native disulfides. In denaturing conditions, analogues LeTx2 and LeTx3 yield non-native isomers, while LeTx1 only forms the isomer with native disulfides. All isomers with native disulfides contain nativelike alpha-helical conformations and bind to synaptosomal membranes with affinities within a log of that shown by the native toxin. By contrast, the non-native LeTx3A analogue exhibits a disordered conformation and a decreased biological potency. Our results indicate that the "CxxxC, CxC" cysteine spacing, conserved in all scorpion toxins and preserved in LeTx1, may play an active role in folding, and that only two native disulfide bonds in leiurotoxin I are sufficient to preserve a nativelike and active conformation. Thus, in the scorpion toxin scaffold, modifications of conserved and interior cysteine residues may permit modulation of function, without significantly affecting folding efficiency and structure.
本研究的目的是探究每个二硫键在雷uro毒素I(一种阻断小电导钾离子通道的短蝎毒素)的折叠和功能中的作用。雷uro毒素I的结构包含一个在所有蝎毒素中保守的基序,由一个螺旋和一个双链β-折叠组成,并由三个二硫键稳定。我们合成了三种类似物,每种类似物都有两个α-氨基丁酸(Abu)部分取代两个桥连的半胱氨酸残基:LeTx1([Abu 3,21]雷uro毒素I)、LeTx2([Abu 8,26]雷uro毒素I)和LeTx3([Abu 12,28]雷uro毒素I)。所有三种类似物都折叠成一种主要产物,含有两个天然二硫键,而LeTx3形成一种额外的异构体,含有非天然二硫键。在变性条件下,类似物LeTx2和LeTx3产生非天然异构体,而LeTx1只形成具有天然二硫键的异构体。所有具有天然二硫键的异构体都包含类似天然的α-螺旋构象,并以与天然毒素所示亲和力对数范围内的亲和力与突触体膜结合。相比之下,非天然的LeTx3A类似物表现出无序构象和降低的生物活性。我们的结果表明,在所有蝎毒素中保守且在LeTx1中保留的“CxxxC,CxC”半胱氨酸间距可能在折叠中起积极作用,并且雷uro毒素I中只有两个天然二硫键就足以保留类似天然的活性构象。因此,在蝎毒素支架中,对保守和内部半胱氨酸残基的修饰可能允许调节功能,而不会显著影响折叠效率和结构。