Würtele Martin, Jelich-Ottmann Christian, Wittinghofer Alfred, Oecking Claudia
Max-Planck Institut für Molekulare Physiologie, Abteilung Strukturelle Biologie, Otto-Hahn-Strasse 11, D-44227 Dortmund, Germany.
EMBO J. 2003 Mar 3;22(5):987-94. doi: 10.1093/emboj/cdg104.
The fungal phytotoxin fusicoccin stabilizes the interaction between the C-terminus of the plant plasma membrane H(+)-ATPase and 14-3-3 proteins, thus leading to permanent activation of the proton pump. This results in an irreversible opening of the stomatal pore, followed by wilting of plants. Here, we report the crystal structure of the ternary complex between a plant 14-3-3 protein, fusicoccin and a phosphopeptide derived from the C-terminus of the H(+)-ATPase. Comparison with the corresponding binary 14-3-3 complexes indicates no major conformational change induced by fusicoccin. The compound rather fills a cavity in the protein-phosphopeptide interaction surface. Isothermal titration calorimetry indicates that the toxin alone binds only weakly to 14-3-3 and that peptide and toxin mutually increase each others' binding affinity approximately 90-fold. These results are important for herbicide development but might have general implications for drug development, since rather than inhibiting protein-protein interactions, which is difficult to accomplish, it might be easier to reverse the strategy and stabilize protein-protein complexes. As the fusicoccin interaction shows, only low-affinity interactions would be required for this strategy.
真菌植物毒素壳梭孢菌素可稳定植物质膜H(+)-ATP酶C末端与14-3-3蛋白之间的相互作用,从而导致质子泵的永久激活。这会导致气孔孔道不可逆地开放,随后植物枯萎。在此,我们报道了植物14-3-3蛋白、壳梭孢菌素与源自H(+)-ATP酶C末端的磷酸肽之间三元复合物的晶体结构。与相应的二元14-3-3复合物相比,壳梭孢菌素未诱导主要的构象变化。该化合物反而填充了蛋白质-磷酸肽相互作用表面的一个空腔。等温滴定量热法表明,单独的毒素与14-3-3的结合较弱,而肽和毒素相互将彼此的结合亲和力提高了约90倍。这些结果对除草剂开发很重要,但可能对药物开发有普遍意义,因为与其抑制难以实现的蛋白质-蛋白质相互作用,不如反过来稳定蛋白质-蛋白质复合物可能更容易。如壳梭孢菌素相互作用所示,该策略仅需要低亲和力相互作用。