Pasternak Oliwia, Bujacz Grzegorz D, Fujimoto Yasuyuki, Hashimoto Yuichi, Jelen Filip, Otlewski Jacek, Sikorski Michal M, Jaskolski Mariusz
Institute of Bioorganic Chemistry, Polish Academy of Sciences, 61704 Poznan, Poland.
Plant Cell. 2006 Oct;18(10):2622-34. doi: 10.1105/tpc.105.037119. Epub 2006 Sep 22.
The cytosolic fraction of Vigna radiata contains a 17-kD protein that binds plant hormones from the cytokinin group, such as zeatin. Using recombinant protein and isothermal titration calorimetry as well as fluorescence measurements coupled with ligand displacement, we have reexamined the K(d) values and show them to range from approximately 10(-6) M (for 4PU30) to 10(-4) M (for zeatin) for 1:1 stoichiometry complexes. In addition, we have crystallized this cytokinin-specific binding protein (Vr CSBP) in complex with zeatin and refined the structure to 1.2 A resolution. Structurally, Vr CSBP is similar to plant pathogenesis-related class 10 (PR-10) proteins, despite low sequence identity (<20%). This unusual fold conservation reinforces the notion that classic PR-10 proteins have evolved to bind small-molecule ligands. The fold consists of an antiparallel beta-sheet wrapped around a C-terminal alpha-helix, with two short alpha-helices closing a cavity formed within the protein core. In each of the four independent CSBP molecules, there is a zeatin ligand located deep in the cavity with conserved conformation and protein-ligand interactions. In three cases, an additional zeatin molecule is found in variable orientation but with excellent definition in electron density, which plugs the entrance to the binding pocket, sealing the inner molecule from contact with bulk solvent.
绿豆的胞质部分含有一种17-kD蛋白,它能结合细胞分裂素类植物激素,如玉米素。我们使用重组蛋白、等温滴定量热法以及结合配体置换的荧光测量方法,重新检测了平衡解离常数(K(d))值,结果表明对于1:1化学计量比的复合物,其范围大约从10⁻⁶ M(对于4PU30)到10⁻⁴ M(对于玉米素)。此外,我们已使这种细胞分裂素特异性结合蛋白(Vr CSBP)与玉米素形成复合物并结晶,将结构精修至1.2 Å分辨率。在结构上,Vr CSBP与植物病程相关的第10类(PR - 10)蛋白相似,尽管序列同一性较低(<20%)。这种不同寻常的折叠保守性强化了经典PR - 10蛋白已进化到可结合小分子配体的观点。该折叠结构由围绕C端α螺旋的反平行β折叠组成,有两个短α螺旋封闭了在蛋白质核心内形成的一个腔。在四个独立的CSBP分子中的每一个中,都有一个玉米素配体位于腔内深处,具有保守的构象和蛋白质 - 配体相互作用。在三种情况下,发现另一个玉米素分子处于可变取向,但在电子密度图中有清晰的显示,它堵住了结合口袋的入口,使内部分子与大量溶剂隔绝。