Vázquez-Rosa Edwin, Rodríguez-Cruz Eva N, Serrano Sybelle, Rodríguez-Laureano Lucelenie, Vega Irving E
Department of Chemistry, College of Natural Sciences, University of Puerto Rico-Río Piedras Campus, San Juan, Puerto Rico, 00931; Protein Mass Spectrometry Core Facility, College of Natural Sciences, University of Puerto Rico - Río Piedras Campus, San Juan, Puerto Rico, 00931.
Protein Sci. 2014 Sep;23(9):1197-207. doi: 10.1002/pro.2499. Epub 2014 Jun 18.
EFhd2 is a calcium binding protein, which is highly expressed in the central nervous system and associated with pathological forms of tau proteins in tauopathies. Previous phosphoproteomics studies and bioinformatics analysis suggest that EFhd2 may be phosphorylated. Here, we determine whether Cdk5, a hyperactivated kinase in tauopathies, phosphorylates EFhd2 and influence its known molecular activities. The results indicated that EFhd2 is phosphorylated by brain extract of the transgenic mouse CK-p25, which overexpresses the Cdk5 constitutive activator p25. Consistently, in vitro kinase assays demonstrated that Cdk5, but not GSK3β, directly phosphorylates EFhd2. Biomass, tandem mass spectrometry, and mutagenesis analyses indicated that Cdk5 monophosphorylates EFhd2 at S74, but not the adjacent S76. Furthermore, Cdk5-mediated phosphorylation of EFhd2 affected its calcium binding activity. Finally, a phospho-specific antibody was generated against EFhd2 phosphorylated at S74 and was used to detect this phosphorylation event in postmortem brain tissue from Alzheimer's disease and normal-aging control cases. Results demonstrated that EFhd2 is phosphorylated in vivo at S74. These results imply that EFhd2's physiological and/or pathological function could be regulated by its phosphorylation state.
EFhd2是一种钙结合蛋白,在中枢神经系统中高度表达,且与tau蛋白病中tau蛋白的病理形式相关。先前的磷酸化蛋白质组学研究和生物信息学分析表明,EFhd2可能会发生磷酸化。在此,我们确定tau蛋白病中过度激活的激酶Cdk5是否会使EFhd2磷酸化,并影响其已知的分子活性。结果表明,EFhd2被过度表达Cdk5组成型激活剂p25的转基因小鼠CK-p25的脑提取物磷酸化。同样,体外激酶分析表明,直接使EFhd2磷酸化的是Cdk5,而非GSK3β。生物质、串联质谱和诱变分析表明,Cdk5使EFhd2在S74处发生单磷酸化,而非相邻的S76。此外,Cdk5介导的EFhd2磷酸化影响其钙结合活性。最后,针对在S74处磷酸化的EFhd2产生了一种磷酸特异性抗体,并用于检测阿尔茨海默病和正常衰老对照病例的死后脑组织中的这种磷酸化事件。结果表明,EFhd2在体内S74处发生磷酸化。这些结果表明,EFhd2的生理和/或病理功能可能受其磷酸化状态的调节。