Kranz Michael, Murray Peter John, Taylor Stephen, Upton Richard J, Clegg William, Elsegood Mark R J
GlaxoSmithKline Cambridge Chemistry Laboratory, Department of Chemistry, University of Cambridge, Cambridge, CB2 1EW, UK.
J Pept Sci. 2006 Jun;12(6):383-8. doi: 10.1002/psc.738.
The recently isolated broad-spectrum antiparasitic apicidin (1) is one of the few naturally occurring cyclic tetrapeptides (CTP). Depending on the solvent, the backbone of 1 exhibits two gamma-turns (in CH(2)Cl(2)) or a beta-turn (in DMSO), differing solely in the rotation of the plane of one of the amide bonds. In the X-ray crystal structure, the peptidic C==Os and NHs are on opposite sides of the backbone plane, giving rise to infinite stacks of cyclotetrapeptides connected by three intermolecular hydrogen bonds between the backbones. Conformational searches (Amber force field) on a truncated model system of 1 confirm all three backbone conformations to be low-energy states. The previously synthesized analogs of 1 containing a reduced amide bond exhibit the same backbone conformation as 1 in DMSO, which is confirmed further by the X-ray crystal structure of a model system of the desoxy analogs of 1. This similarity helps in explaining why the desoxy analogs retain some of the antiprotozoal activities of apicidin. The backbone-reduction approach designed to facilitate the cyclization step of the acyclic precursors of the CTPs seems to retain the conformational preferences of the parent peptide backbone.
最近分离得到的广谱抗寄生虫药物阿皮西丁(1)是少数天然存在的环四肽(CTP)之一。根据溶剂的不同,1的主链呈现出两种γ-转角(在二氯甲烷中)或一种β-转角(在二甲基亚砜中),仅在其中一个酰胺键平面的旋转上有所不同。在X射线晶体结构中,肽键的C==O和NH位于主链平面的相对两侧,通过主链之间的三个分子间氢键形成环四肽的无限堆积。对1的截短模型系统进行的构象搜索(Amber力场)证实,所有三种主链构象均为低能态。先前合成的含有还原酰胺键的1的类似物在二甲基亚砜中表现出与1相同的主链构象,1的脱氧类似物模型系统的X射线晶体结构进一步证实了这一点。这种相似性有助于解释为什么脱氧类似物保留了阿皮西丁的一些抗原生动物活性。旨在促进CTP无环前体环化步骤的主链还原方法似乎保留了母体肽主链的构象偏好。