Lu G, Sehnke P C, Ferl R J
Horticultural Sciences Department, University of Florida, Gainesville 32611.
Plant Cell. 1994 Apr;6(4):501-10. doi: 10.1105/tpc.6.4.501.
Arabidopsis GF14 omega was originally described because of its apparent association with a DNA-protein complex; it is a member of the 14-3-3 kinase regulatory protein family that is conserved throughout eukaryotes. Here, we demonstrated that recombinant GF14 omega is expressed in Escherichia coli as a dimer. Blot binding and electrophoretic mobility shift analyses indicated that GF14 omega binds calcium. Equilibrium dialysis further demonstrated that GF14 omega binds an equimolar amount of calcium with an apparent binding constant of 5.5 x 10(4) M-1 under physiological conditions. The C-terminal domain, which contains a potential EF hand motif, is responsible for the calcium binding. The C-terminal domain also cross-reacted with the anti-GF14 omega monoclonal antibody. In addition, GF14 omega is phosphorylated by Arabidopsis protein kinase activity at a serine residue(s) in vitro. Therefore, GF14 omega protein has biochemical properties consistent with potential signaling roles in plants. The presence of a potential EF hand-like motif in the highly conserved C terminus of 14-3-3 proteins together with the calcium-dependent multiple functions attributed to the 14-3-3 proteins indicate that the C terminus EF hand is a common functional element of this family of proteins.
拟南芥GF14ω最初因其与一种DNA - 蛋白质复合物的明显关联而被描述;它是14 - 3 - 3激酶调节蛋白家族的成员,该家族在整个真核生物中都保守。在这里,我们证明重组GF14ω在大肠杆菌中以二聚体形式表达。印迹结合和电泳迁移率变动分析表明GF14ω结合钙。平衡透析进一步证明,在生理条件下,GF14ω结合等摩尔量的钙,其表观结合常数为5.5×10⁴ M⁻¹。包含潜在EF手基序的C末端结构域负责钙结合。C末端结构域也与抗GF14ω单克隆抗体发生交叉反应。此外,在体外,GF14ω被拟南芥蛋白激酶活性磷酸化在一个丝氨酸残基上。因此,GF14ω蛋白具有与植物中潜在信号传导作用一致的生化特性。14 - 3 - 3蛋白高度保守的C末端存在潜在的EF手样基序,以及14 - 3 - 3蛋白所具有的钙依赖性多种功能,表明C末端EF手是该蛋白家族的一个共同功能元件。