Wendt K U, Lenhart A, Schulz G E
Institut für Organische Chemie und Biochemie, Albertstr. 21, Freiburg im Breisgau, D-79104, Germany.
J Mol Biol. 1999 Feb 12;286(1):175-87. doi: 10.1006/jmbi.1998.2470.
Squalene cyclases catalyze a cationic cyclization cascade, which is homologous to a key step in cholesterol biosynthesis. The structure of the enzyme from Alicyclobacillus acidocaldarius has been determined in a new crystal form at 2.0 A resolution (1 A=0.1 nm) and refined to an R-factor of 15.3 % (Rfree=18.7 %). The structure indicates how the initial protonation and the final deprotonation of squalene occur and how the transient carbocations are stabilized. The pathways of the flexible educt squalene from the membrane interior to the active center cavity and of the rigid fused-ring product hopene in the reverse direction are discussed. The enzyme contains eight so-called QW-sequence repeats that fortify the alpha/alpha-barrels by an intricate interaction network. They are unique to the known triterpene cyclases and are presumed to shield these enzymes against the released enthalpy of the highly exergonic catalyzed reaction. The enzyme is a monotopic membrane protein, the membrane-binding interactions of which are described and compared with those of two prostaglandin-H2 synthase isoenzymes, the only other structurally characterized proteins of this type. In the crystals the membrane-binding regions face each other, suggesting a micelle-type detergent structure between them.
角鲨烯环化酶催化阳离子环化级联反应,该反应与胆固醇生物合成中的关键步骤同源。嗜酸嗜热栖热菌的该酶结构已通过分辨率为2.0 Å(1 Å = 0.1 nm)的新晶体形式确定,并精修至R因子为15.3%(Rfree = 18.7%)。该结构表明了角鲨烯的初始质子化和最终去质子化是如何发生的,以及瞬态碳正离子是如何稳定的。讨论了柔性底物角鲨烯从膜内部到活性中心腔的途径以及刚性稠环产物藿烯反向的途径。该酶包含八个所谓的QW序列重复序列,它们通过复杂的相互作用网络强化α/α-桶。它们是已知三萜环化酶所特有的,推测可保护这些酶免受高度放能催化反应释放的焓的影响。该酶是一种单锚膜蛋白,描述了其膜结合相互作用,并与两种前列腺素-H2合酶同工酶的膜结合相互作用进行了比较,这两种同工酶是此类唯一其他已进行结构表征的蛋白质。在晶体中,膜结合区域相互面对,表明它们之间存在胶束型去污剂结构。