Schievano Elisabetta, Mammi Stefano, Monticelli Luca, Ciardella Marta, Peggion Evaristo
Institute of Biomolecular Chemistry, CNR, Department of Organic Chemistry, University of Padova, Via Marzolo 1, 35131 Padua, Italy.
J Am Chem Soc. 2003 Dec 17;125(50):15314-23. doi: 10.1021/ja0300970.
Bombolitins are five structurally related heptadecapeptides originally isolated from the venom of a bumblebee. In aqueous solution, bombolitins at sufficiently high concentration form oligomeric aggregates with consequent conformational transition from a random coil to the alpha-helical structure. Previous studies suggested that oligomeric aggregates could mimic the four-helix bundle structural motif of proteins. In the present work, we synthesized the following peptide sequence formed by two bombolitin III sequences linked head-to-tail by the tetrapeptide bridge -Gly-Pro-Val-Asp-: I(1)-K(2)-I(3)-M(4)-D(5)-I(6)-L(7)-A(8)-K(9)-L(10)-G(11)-K(12)-V(13)-L(14)-A(15)-H(16)-V(17)-G(18)-P(19)-V(20)-D(21)-I(22)-K(23)-I(24)-M(25)-D(26)-I(27)-L(28)-A(29)-K(30)-L(31)-G(32)-K(33)-V(3)(4)-L(35)-A(36)-H(37)-V(38)-NH(2). The tetrapeptide GPVD connecting the two helical peptide sequences was chosen to facilitate the formation of the helix-loop-helix structural motif. The conformational properties of the peptide were studied by CD, NMR, and molecular dynamics calculations. The results indicate the presence of a helix-loop-helix conformation at 10(-)(5) M concentration. At higher concentrations, NOESY connectivities were detected which are compatible with the presence of dimers or higher aggregates of peptide molecules in the helix-loop-helix structure packed in an antiparallel fashion. Molecular dynamics simulation were run either with NOE distance restraints or without restraints in explicit solvent for extended time. The results of these simulations support the dimerization of the molecules in the helix-loop-helix structure with formation of the four-helix bundle motif.
蜂毒素是最初从大黄蜂毒液中分离出的5种结构相关的十七肽。在水溶液中,浓度足够高的蜂毒素会形成寡聚聚集体,随之发生从无规卷曲到α-螺旋结构的构象转变。先前的研究表明,寡聚聚集体可以模拟蛋白质的四螺旋束结构基序。在本研究中,我们合成了由两个蜂毒素III序列通过四肽桥-Gly-Pro-Val-Asp-首尾相连形成的以下肽序列:I(1)-K(2)-I(3)-M(4)-D(5)-I(6)-L(7)-A(8)-K(9)-L(10)-G(11)-K(12)-V(13)-L(14)-A(15)-H(16)-V(17)-G(18)-P(19)-V(20)-D(21)-I(22)-K(23)-I(24)-M(25)-D(26)-I(27)-L(28)-A(29)-K(30)-L(31)-G(32)-K(33)-V(3)(4)-L(35)-A(36)-H(37)-V(38)-NH(2)。选择连接两个螺旋肽序列的四肽GPVD以促进螺旋-环-螺旋结构基序的形成。通过圆二色光谱(CD)、核磁共振(NMR)和分子动力学计算研究了该肽的构象性质。结果表明在10^(-5) M浓度下存在螺旋-环-螺旋构象。在更高浓度下,检测到的核欧沃豪斯效应光谱(NOESY)连接性与以反平行方式堆积在螺旋-环-螺旋结构中的肽分子二聚体或更高聚集体的存在相符。在明确的溶剂中,分子动力学模拟在有或没有NOE距离限制的情况下长时间运行。这些模拟结果支持了螺旋-环-螺旋结构中分子的二聚化以及四螺旋束基序的形成。