Felizmenio-Quimio M E, Daly N L, Craik D J
Institute for Molecular Bioscience, University of Queensland, Brisbane, 4072 Queensland, Australia.
J Biol Chem. 2001 Jun 22;276(25):22875-82. doi: 10.1074/jbc.M101666200. Epub 2001 Apr 5.
Much interest has been generated by recent reports on the discovery of circular (i.e. head-to-tail cyclized) proteins in plants. Here we report the three-dimensional structure of one of the newest such circular proteins, MCoTI-II, a novel trypsin inhibitor from Momordica cochinchinensis, a member of the Cucurbitaceae plant family. The structure consists of a small beta-sheet, several turns, and a cystine knot arrangement of the three disulfide bonds. Interestingly, the molecular topology is similar to that of the plant cyclotides (Craik, D. J., Daly, N. L., Bond, T., and Waine, C. (1999) J. Mol. Biol. 294, 1327-1336), which derive from the Rubiaceae and Violaceae plant families, have antimicrobial activities, and exemplify the cyclic cystine knot structural motif as part of their circular backbone. The sequence, biological activity, and plant family of MCoTI-II are all different from known cyclotides. However, given the structural similarity, cyclic backbone, and plant origin of MCoTI-II, we propose that MCoTI-II can be classified as a new member of the cyclotide class of proteins. The expansion of the cyclotides to include trypsin inhibitory activity and a new plant family highlights the importance and functional variability of circular proteins and the fact that they are more common than has previously been believed. Insights into the possible roles of backbone cyclization have been gained by a comparison of the structure of MCoTI-II with the homologous acyclic trypsin inhibitors CMTI-I and EETI-II from the Cucurbitaceae plant family.
近期有关在植物中发现环状(即头对尾环化)蛋白质的报道引发了广泛关注。在此,我们报道了一种最新的此类环状蛋白质——MCoTI-II的三维结构,它是一种来自葫芦科植物罗汉果的新型胰蛋白酶抑制剂。该结构由一个小的β折叠、几个转角以及三个二硫键形成的胱氨酸结排列组成。有趣的是,其分子拓扑结构与植物环肽(Craik, D. J., Daly, N. L., Bond, T., and Waine, C. (1999) J. Mol. Biol. 294, 1327 - 1336)相似,环肽源自茜草科和堇菜科植物家族,具有抗菌活性,并以环状胱氨酸结结构基序作为其环状主链的一部分。MCoTI-II的序列、生物活性和植物家族均与已知的环肽不同。然而,鉴于MCoTI-II的结构相似性、环状主链和植物来源,我们提出MCoTI-II可被归类为环肽类蛋白质的一个新成员。环肽的扩展包括胰蛋白酶抑制活性和一个新的植物家族,这突出了环状蛋白质的重要性和功能多样性,以及它们比之前认为的更为常见这一事实。通过将MCoTI-II的结构与葫芦科植物家族中的同源非环状胰蛋白酶抑制剂CMTI-I和EETI-II进行比较,我们对主链环化的可能作用有了深入了解。