Bilder Patrick W, Ding Huangen, Newcomer Marcia E
Department of Biological Sciences, Louisiana State University, Baton Rouge, LA 70803, USA.
Biochemistry. 2004 Jan 13;43(1):133-9. doi: 10.1021/bi035440s.
IscA belongs to an ancient family of proteins responsible for iron-sulfur cluster assembly in essential metabolic pathways preserved throughout evolution. We report here the 2.3 A resolution crystal structure of Escherichia coli IscA, a novel fold in which mixed beta-sheets form a compact alpha-beta sandwich domain. In contrast to the highly mobile secondary structural elements within the bacterial Fe-S scaffold protein IscU, a protein which is thought to have a similar function, the great majority of the amino acids that are conserved in IscA homologues are located in elements that constitute a well-ordered fold. However, the 10-residue C-terminal tail segment that contains two invariant cysteines critical for the Fe-S-binding function of a cyanobacterial (Synechocystis PCC) IscA homologue is not ordered in our structure. In addition, the crystal packing reveals a helical assembly that is constructed from two possible tetrameric oligomers of IscA.
IscA属于一个古老的蛋白质家族,该家族负责在整个进化过程中保存的基本代谢途径中的铁硫簇组装。我们在此报告大肠杆菌IscA的2.3埃分辨率晶体结构,这是一种新颖的折叠结构,其中混合β折叠形成一个紧凑的α-β三明治结构域。与细菌铁硫支架蛋白IscU(一种被认为具有相似功能的蛋白质)中高度可移动的二级结构元件不同,IscA同源物中绝大多数保守氨基酸位于构成有序折叠的元件中。然而,在我们的结构中,包含两个对蓝藻(集胞藻PCC)IscA同源物的铁硫结合功能至关重要的不变半胱氨酸的10个残基C末端尾段没有有序排列。此外,晶体堆积揭示了一种螺旋组装,它由IscA的两种可能的四聚体寡聚体构成。