Mandal Kalyaneswar, Pentelute Brad L, Tereshko Valentina, Thammavongsa Vilasak, Schneewind Olaf, Kossiakoff Anthony A, Kent Stephen B H
Department of Biochemistry and Molecular Biology, The University of Chicago, Chicago, IL 60637, USA.
Protein Sci. 2009 Jun;18(6):1146-54. doi: 10.1002/pro.127.
We describe the use of racemic crystallography to determine the X-ray structure of the natural product plectasin, a potent antimicrobial protein recently isolated from fungus. The protein enantiomers L-plectasin and D-plectasin were prepared by total chemical synthesis; interestingly, L-plectasin showed the expected antimicrobial activity, while D-plectasin was devoid of such activity. The mirror image proteins were then used for racemic crystallization. Synchrotron X-ray diffraction data were collected to atomic resolution from a racemic plectasin crystal; the racemate crystallized in the achiral centrosymmetric space group P1 with one L-plectasin molecule and one D-plectasin molecule forming the unit cell. Dimer-like intermolecular interactions between the protein enantiomers were observed, which may account for the observed extremely low solvent content (13%-15%) and more highly ordered nature of the racemic crystals. The structure of the plectasin molecule was well defined for all 40 amino acids and was generally similar to the previously determined NMR structure, suggesting minimal impact of the crystal packing on the plectasin conformation.
我们描述了利用外消旋晶体学来确定天然产物plectasin的X射线结构,plectasin是一种最近从真菌中分离出的强效抗菌蛋白。通过全化学合成制备了蛋白质对映体L-plectasin和D-plectasin;有趣的是,L-plectasin表现出预期的抗菌活性,而D-plectasin则没有这种活性。然后将镜像蛋白质用于外消旋结晶。从外消旋plectasin晶体收集到了原子分辨率的同步加速器X射线衍射数据;该外消旋体在手性中心对称空间群P1中结晶,一个L-plectasin分子和一个D-plectasin分子构成晶胞。观察到蛋白质对映体之间存在类似二聚体的分子间相互作用,这可能解释了所观察到的极低溶剂含量(13%-15%)以及外消旋晶体更高的有序性。对于所有40个氨基酸,plectasin分子的结构都得到了很好的确定,并且总体上与先前确定的NMR结构相似,这表明晶体堆积对plectasin构象的影响最小。