Structure and mechanism of the evolutionarily unique plant enzyme chalcone isomerase

被引:267
作者
Jez J.M. [1 ]
Bowman M.E. [1 ]
Dixon R.A. [2 ]
Noel J.P. [1 ]
机构
[1] Structural Biology Laboratory, Salk Inst. for Biological Studies, San Diego, CA 92037
[2] Plant Biology Division, Samuel Roberts Noble Foundation, Ardmore, OK 73402
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
D O I
10.1038/79025
中图分类号
学科分类号
摘要
Chalcone isomerase (CHI) catalyzes the intramolecular cyclization of chalcone synthesized by cholcone synthase (CHS) into (2S)-naringenin, an essential compound in the biosynthesis of anthocyanin pigments, inducers of Rhizobium nodulation genes, and antimicrobial phytoalexins. The 1.85 Å resolution crystal structure of alfalfa CHI in complex with (2S)-naringenin reveals a novel open-faced β-sandwich fold. Currently, proteins with homologous primary sequences are found only in higher plants. The topology of the active site cleft defines the stereochemistry of the cyclization reaction. The structure and mutational analysis suggest a mechanism in which shape complementarity of the binding cleft locks the substrate into a constrained conformation that allows the reaction to proceed with a second-order rate constant approaching the diffusion controlled limit. This structure raises questions about the evolutionary history of this structurally unique plant enzyme.
引用
收藏
页码:786 / 791
页数:5
相关论文
共 42 条
  • [11] Van Tunen A.J., Mur L.A., Recourt K., Gerats A.G., Mol J.N., Plant Cell, 3, pp. 39-48, (1991)
  • [12] Firmin J.L., Wilson K.E., Rossen L., Johnston A.W.B., Nature, 324, pp. 90-92, (1986)
  • [13] Bednar R.A., Hadcock J.R., J. Biol. Chem., 263, pp. 9582-9588, (1988)
  • [14] Dixon R.A., Blyden E.R., Robbins M.P., Van Tunen A.J., Mol J.N., Phytochemistry, 27, pp. 2801-2808, (1988)
  • [15] McKhann H.I., Hirsch A.M., Plant Mol. Biol., 24, pp. 767-777, (1994)
  • [16] Sander C., Schneider R., Proteins, 9, pp. 56-68, (1991)
  • [17] Altschul S.F., Et al., Nucleic Acids Res., 25, pp. 3389-3402, (1997)
  • [18] Bednar R.A., Fried W.B., Lock Y.W., Pramanik B., J. Biol. Chem., 264, pp. 14272-14276, (1989)
  • [19] Hahlbrock K., Wong E., Schill L., Grisebach H., Phytochemistry, 9, pp. 949-958, (1970)
  • [20] Boland M.J., Wong E., Bioorg. Chem., 8, pp. 1-8, (1979)