Lindqvist Y, Huang W, Schneider G, Shanklin J
Department of Medical Biochemistry and Biophysics, Karolinska Institute, Stockholm, Sweden.
EMBO J. 1996 Aug 15;15(16):4081-92.
The three-dimensional structure of recombinant homodimeric delta9 stearoyl-acyl carrier protein desaturase, the archetype of the soluble plant fatty acid desaturases that convert saturated to unsaturated fatty acids, has been determined by protein crystallographic methods to a resolution of 2.4 angstroms. The structure was solved by a combination of single isomorphous replacement, anomalous contribution from the iron atoms to the native diffraction data and 6-fold non-crystallographic symmetry averaging. The 363 amino acid monomer consists of a single domain of 11 alpha-helices. Nine of these form an antiparallel helix bundle. The enzyme subunit contains a di-iron centre, with ligands from four of the alpha-helices in the helix bundle. The iron ions are bound in a highly symmetric environment, with one of the irons forming interactions with the side chains of E196 and H232 and the second iron with the side chains of E105 and H146. Two additional glutamic acid side chains, from E143 and E229, are within coordination distance to both iron ions. A water molecule is found within the second coordination sphere from the iron atoms. The lack of electron density corresponding to a mu-oxo bridge, and the long (4.2 angstroms) distance between the iron ions suggests that this probably represents the diferrous form of the enzyme. A deep channel which probably binds the fatty acid extends from the surface into the interior of the enzyme. Modelling of the substrate, stearic acid, into this channel places the delta9 carbon atom in the vicinity of one of the iron ions.
重组同型二聚体δ9硬脂酰-酰基载体蛋白去饱和酶是可溶性植物脂肪酸去饱和酶的原型,可将饱和脂肪酸转化为不饱和脂肪酸。通过蛋白质晶体学方法已确定其三维结构,分辨率为2.4埃。该结构通过单同晶置换、铁原子对天然衍射数据的反常贡献以及六重非晶体学对称性平均相结合的方法得以解析。363个氨基酸的单体由11个α螺旋组成的单一结构域构成。其中9个形成反平行螺旋束。酶亚基包含一个双铁中心,其配体来自螺旋束中的四个α螺旋。铁离子结合在高度对称的环境中,其中一个铁与E196和H232的侧链相互作用,第二个铁与E105和H146的侧链相互作用。另外两个谷氨酸侧链,来自E143和E229,与两个铁离子的配位距离均在范围内。在铁原子的第二配位球内发现一个水分子。缺乏对应于μ-氧桥的电子密度以及铁离子之间较长(4.2埃)的距离表明,这可能代表酶的二价铁形式。一个可能结合脂肪酸的深通道从酶的表面延伸至内部。将底物硬脂酸模拟到该通道中,使δ9碳原子位于其中一个铁离子附近。