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真菌毒素 Fusicoccin 稳定 CaMKK2 与 14-3-3 之间的蛋白-蛋白相互作用。

Stabilization of Protein-Protein Interactions between CaMKK2 and 14-3-3 by Fusicoccins.

机构信息

Department of Physical and Macromolecular Chemistry, Faculty of Science, Charles University, Prague, Czech Republic.

Department of Structural Biology of Signaling Proteins, Division BIOCEV, Institute of Physiology of the Czech Academy of Sciences, 252 50 Vestec, Czech Republic.

出版信息

ACS Chem Biol. 2020 Nov 20;15(11):3060-3071. doi: 10.1021/acschembio.0c00821. Epub 2020 Nov 4.

Abstract

Ca/calmodulin-dependent protein kinase kinase 2 (CaMKK2) regulates several key physiological and pathophysiological processes, and its dysregulation has been implicated in obesity, diabetes, and cancer. CaMKK2 is inhibited through phosphorylation in a process involving binding to the scaffolding 14-3-3 protein, which maintains CaMKK2 in the phosphorylation-mediated inhibited state. The previously reported structure of the N-terminal CaMKK2 14-3-3-binding motif bound to 14-3-3 suggested that the interaction between 14-3-3 and CaMKK2 could be stabilized by small-molecule compounds. Thus, we investigated the stabilization of interactions between CaMKK2 and 14-3-3γ by Fusicoccin A and other fusicoccanes-diterpene glycosides that bind at the interface between the 14-3-3 ligand binding groove and the 14-3-3 binding motif of the client protein. Our data reveal that two of five tested fusicoccanes considerably increase the binding of phosphopeptide representing the 14-3-3 binding motif of CaMKK2 to 14-3-3γ. Crystal structures of two ternary complexes suggest that the steric contacts between the C-terminal part of the CaMKK2 14-3-3 binding motif and the adjacent fusicoccane molecule are responsible for differences in stabilization potency between the study compounds. Moreover, our data also show that fusicoccanes enhance the binding affinity of phosphorylated full-length CaMKK2 to 14-3-3γ, which in turn slows down CaMKK2 dephosphorylation, thus keeping this protein in its phosphorylation-mediated inhibited state. Therefore, targeting the fusicoccin binding cavity of 14-3-3 by small-molecule compounds may offer an alternative strategy to suppress CaMKK2 activity by stabilizing its phosphorylation-mediated inhibited state.

摘要

钙/钙调蛋白依赖性蛋白激酶激酶 2(CaMKK2)调节多种关键的生理和病理生理过程,其失调与肥胖、糖尿病和癌症有关。CaMKK2 通过与支架蛋白 14-3-3 结合的磷酸化过程被抑制,该过程将 CaMKK2 维持在磷酸化介导的抑制状态。先前报道的与 14-3-3 结合的 CaMKK2 N 端 14-3-3 结合基序的结构表明,14-3-3 和 CaMKK2 之间的相互作用可以通过小分子化合物稳定。因此,我们研究了 Fusicoccin A 以及与 14-3-3 配体结合槽和客户蛋白 14-3-3 结合基序之间的界面结合的其他 Fusicoccane-diterpene 糖苷稳定 CaMKK2 和 14-3-3γ 之间相互作用的能力。我们的数据表明,在测试的五种 Fusicoccane 中二种显著增加了代表 CaMKK2 的 14-3-3 结合基序的磷酸肽与 14-3-3γ 的结合。两个三元复合物的晶体结构表明,CaMKK2 14-3-3 结合基序的 C 端部分与相邻的 Fusicoccane 分子之间的立体接触负责研究化合物之间稳定能力的差异。此外,我们的数据还表明,Fusicoccane 增强了磷酸化全长 CaMKK2 与 14-3-3γ 的结合亲和力,这反过来又减缓了 CaMKK2 的去磷酸化,从而使该蛋白保持在其磷酸化介导的抑制状态。因此,通过小分子化合物靶向 14-3-3 的 Fusicoccin 结合腔可能提供一种替代策略,通过稳定其磷酸化介导的抑制状态来抑制 CaMKK2 活性。

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