Van de Ven F J, Van den Hooven H W, Konings R N, Hilbers C W
Nijmegen SON Research Center, University of Nijmegen, The Netherlands.
Eur J Biochem. 1991 Dec 18;202(3):1181-8. doi: 10.1111/j.1432-1033.1991.tb16488.x.
Nisin is a posttranslationally modified protein of 34 amino acids, and is a member of the class of bacteriocidal polypeptides known as lantibiotics, that contain the unusual amino acid lanthionine. Its structure in aqueous solution has been determined on the basis of NMR data, i.e. interproton distance constraints derived from nuclear Overhauser enhancement spectroscopy and torsion angle constraints derived from double-quantum-filtered correlated spectroscopy. Translation of the NMR constraints into a three-dimensional structure was carried out with the distance-geometry program DISMAN, followed by restrained energy minimization using CHARMm. The internal mobility of the peptide chain prohibited the determination of a precise overall folding of the molecule, but parts of the structure could be obtained, albeit sometimes with low resolution. The structure of nisin can best be defined as follows. The outermost N-terminal and C-terminal regions of nisin appear quite flexible, the remainder of the molecule consists of an amphiphilic N-terminal fragment (residues 3-19), joined by a flexible 'hinge' region to a rigid double-ring fragment formed by residues 23-28. The latter fragment has the appearance of a somewhat overwound alpha-helix. It is suggested, by assuming the presence of a (transient) alpha-helical structure in this part of prenisin, that the coupling between residues 23 and 26, as well as between 25 and 28, by thioether bridges, and the inversion of the C alpha chiralities at positions 23 and 25, can be rationalized.
乳链菌肽是一种经翻译后修饰的由34个氨基酸组成的蛋白质,属于一类称为羊毛硫抗生素的杀菌多肽,这类多肽含有不寻常的氨基酸丙氨酸硫醚。其在水溶液中的结构已根据核磁共振数据确定,即源自核Overhauser效应光谱的质子间距离约束和源自双量子滤波相关光谱的扭转角约束。利用距离几何程序DISMAN将核磁共振约束转化为三维结构,随后使用CHARMm进行受限能量最小化。肽链的内部流动性阻碍了对分子精确整体折叠的确定,但结构的部分区域可以得到,尽管有时分辨率较低。乳链菌肽的结构可最好地定义如下。乳链菌肽最外层的N端和C端区域显得相当灵活,分子的其余部分由一个两亲性的N端片段(残基3 - 19)组成,通过一个灵活的“铰链”区域连接到由残基23 - 28形成的刚性双环片段。后一个片段呈现出有点过度缠绕的α螺旋外观。通过假设在乳链菌肽前体的这一部分存在(瞬时)α螺旋结构,有人提出,残基23和26之间以及25和28之间通过硫醚桥的偶联,以及位置23和25处Cα手性的反转,可以得到合理的解释。