Kostelecky Brenda, Saurin Adrian T, Purkiss Andrew, Parker Peter J, McDonald Neil Q
Structural Biology Laboratory, London Research Institute, Cancer Research UK, 44 Lincoln's Inn Fields, London WC2A 3PX, UK.
EMBO Rep. 2009 Sep;10(9):983-9. doi: 10.1038/embor.2009.150. Epub 2009 Aug 7.
The phosphoserine/threonine binding protein 14-3-3 stimulates the catalytic activity of protein kinase C-epsilon (PKCepsilon) by engaging two tandem phosphoserine-containing motifs located between the PKCepsilon regulatory and catalytic domains (V3 region). Interaction between 14-3-3 and this region of PKCepsilon is essential for the completion of cytokinesis. Here, we report the crystal structure of 14-3-3zeta bound to a synthetic diphosphorylated PKCepsilon V3 region revealing how a consensus 14-3-3 site and a divergent 14-3-3 site cooperate to bind to 14-3-3 and so activate PKCepsilon. Thermodynamic data show a markedly enhanced binding affinity for two-site phosphopeptides over single-site 14-3-3 binding motifs and identifies Ser 368 as a gatekeeper phosphorylation site in this physiologically relevant 14-3-3 ligand. This dual-site intra-chain recognition has implications for other 14-3-3 targets, which seem to have only a single 14-3-3 motif, as other lower affinity and cryptic 14-3-3 gatekeeper sites might exist.
磷酸丝氨酸/苏氨酸结合蛋白14-3-3通过与位于蛋白激酶C-ε(PKCε)调节域和催化域之间的两个串联含磷酸丝氨酸基序(V3区)结合,刺激PKCε的催化活性。14-3-3与PKCε的该区域之间的相互作用对于胞质分裂的完成至关重要。在此,我们报道了14-3-3ζ与合成的双磷酸化PKCε V3区结合的晶体结构,揭示了一个共有14-3-3位点和一个不同的14-3-3位点如何协同结合14-3-3从而激活PKCε。热力学数据表明,与单一位点的14-3-3结合基序相比,双位点磷酸肽的结合亲和力显著增强,并确定Ser 368为该生理相关的14-3-3配体中的一个守门磷酸化位点。这种链内双位点识别对其他14-3-3靶标有影响,这些靶标似乎只有一个14-3-3基序,因为可能存在其他低亲和力和隐蔽的14-3-3守门位点。