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预测环四肽的构象状态。

Predicting the conformational states of cyclic tetrapeptides.

作者信息

Loiseau Nicolas, Gomis Jean-Marie, Santolini Jérôme, Delaforge Marcel, André François

机构信息

CNRS-URA 2096, Protéines Membranaires Transductrices d'Energie, DBJC, et Département de Biologie, Joliet-Curie, CEA-Saclay, 91191 Gif-sur-Yvette cedex, France.

出版信息

Biopolymers. 2003 Jul;69(3):363-85. doi: 10.1002/bip.10339.

Abstract

Biologically active cyclic tetrapeptides, usually found among fungi metabolites, exhibit phytotoxic or cytostatic activities that are likely to be governed by specific conformations adopted in solution. For conformational studies and drug design, there is a strong interest in using fast and reliable methods to determine correctly the conformational population of cyclotetrapeptides. We show here that standard molecular mechanics computational approach gives satisfactory results. The method was validated step by step by experimental data either obtained after synthesis and NMR analysis, or found in the literature. The cyclo(Gly)(4), cyclo(Ala)(4), cyclo(Sar)(4), and cyclo(SarGly)(2) peptides were used to evaluate the prediction of the peptide backbone conformation, and the detailed conformational analysis of tentoxin, a natural phytotoxic cyclotetrapeptide in which N-alkylated peptide bonds alternate with regular secondary ones, was used to validate the computation of conformers proportions. From the knowledge of an initial cyclic primary structure and of the D or L configuration of the amino acids, we show that it is possible to determine the exact orientation of carbonyl groups and to predict the nature of conformers present in solution. The proportion of each conformer can be inferred from a statistical thermodynamics approach by using the potential energy values of each conformer, computed by molecular mechanics methods with the TRIPOS force field, which allowed us to account for the solvent. The solvent contribution was processed by two different methods according to the nature of the interactions: whether through the dielectric constant introduced in the electrostatic potential, when interaction with solute molecules are weak or negligible, or through the computation of free energy of solvation using the algorithm SILVERWARE for solvents explicitly interacting with the solute. When applied to tentoxin, this conformational analysis yielded results in very good agreement with the experimental data reported by Pinet et al. (Biopolymers, 1995, Vol. 36, pp. 135-152), on both the nature of existing conformers and their relative proportions, whatever the nature of the considered solvent.

摘要

生物活性环四肽通常存在于真菌代谢产物中,具有植物毒性或细胞抑制活性,其活性可能由溶液中所采用的特定构象决定。对于构象研究和药物设计而言,人们对使用快速且可靠的方法来正确测定环四肽的构象群体有着浓厚兴趣。我们在此表明,标准的分子力学计算方法能给出令人满意的结果。该方法通过合成和核磁共振分析后获得的实验数据或文献中找到的数据逐步进行验证。环(甘氨酸)(4)、环(丙氨酸)(4)、环(肌氨酸)(4)和环(肌氨酸 - 甘氨酸)(2)肽用于评估肽主链构象的预测,而对一种天然植物毒性环四肽——毒莠定的详细构象分析用于验证构象异构体比例的计算,毒莠定中N - 烷基化肽键与规则二级肽键交替出现。基于初始环一级结构以及氨基酸的D型或L型构型的知识,我们表明可以确定羰基的精确取向,并预测溶液中存在的构象异构体的性质。通过使用分子力学方法结合TRIPOS力场计算得到的每个构象异构体的势能值,借助统计热力学方法可以推断出每个构象异构体的比例,这使我们能够考虑溶剂的影响。根据相互作用的性质,溶剂贡献通过两种不同方法处理:当与溶质分子的相互作用较弱或可忽略不计时,通过引入静电势中的介电常数来处理;或者当溶剂与溶质发生明确相互作用时,使用SILVERWARE算法计算溶剂化自由能来处理。当应用于毒莠定时,这种构象分析在现有构象异构体的性质及其相对比例方面都产生了与皮内特等人(《生物聚合物》,1995年,第36卷,第135 - 152页)报道的实验数据非常吻合的结果,无论所考虑溶剂的性质如何。

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