Cobessi D, Huang L S, Ban M, Pon N G, Daldal F, Berry E A
Physical Biosciences Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley CA 94720, USA.
Acta Crystallogr D Biol Crystallogr. 2002 Jan;58(Pt 1):29-38. doi: 10.1107/s0907444901017267. Epub 2001 Dec 21.
Bacterioferritin from Rhodobacter capsulatus was crystallized and its structure was solved at 2.6 A resolution. This first structure of a bacterioferritin from a photosynthetic organism is a spherical particle of 24 subunits displaying 432 point-group symmetry like ferritin and bacterioferritin from Escherichia coli. Crystallized in the I422 space group, its structural analysis reveals for the first time the non-symmetric heme molecule located on a twofold crystallographic symmetry axis. Other hemes of the protomer are situated on twofold noncrystallographic axes. Apparently, both types of sites bind heme in two orientations, leading to an average structure consisting of a symmetric 50:50 mixture, thus satisfying the crystallographic and noncrystallographic symmetry of the crystal. Five water molecules are situated close to the heme, which is bound in a hydrophobic pocket and axially coordinated by two crystallographic or noncrystallographically related methionine residues. Its ferroxidase center, in which Fe(II) is oxidized to Fe(III), is empty or fractionally occupied by a metal ion. Two positions are observed for the coordinating Glu18 side chain instead of one in the E. coli enzyme in which the site is occupied. This result suggests that the orientation of the Glu18 side chain could be constrained by this interaction.
来自荚膜红细菌的细菌铁蛋白被结晶,并以2.6埃的分辨率解析了其结构。这种来自光合生物的细菌铁蛋白的首个结构是一个由24个亚基组成的球形颗粒,像来自大肠杆菌的铁蛋白和细菌铁蛋白一样呈现432点群对称性。它在I422空间群中结晶,其结构分析首次揭示了位于二重晶体学对称轴上的非对称血红素分子。原体的其他血红素位于非晶体学二重轴上。显然,这两种位点都以两种取向结合血红素,导致平均结构由对称的50:50混合物组成,从而满足晶体的晶体学和非晶体学对称性。五个水分子位于靠近血红素的位置,血红素结合在一个疏水口袋中,并由两个晶体学或非晶体学相关的甲硫氨酸残基轴向配位。其亚铁氧化酶中心(其中Fe(II)被氧化为Fe(III))是空的或部分被一个金属离子占据。观察到配位的Glu18侧链有两个位置,而在被占据位点的大肠杆菌酶中只有一个位置。这一结果表明,Glu18侧链的取向可能受这种相互作用的限制。