Scholten Arjen, Poh Mee Kian, van Veen Toon A B, van Breukelen Bas, Vos Marc A, Heck Albert J R
Department of Biomolecular Mass Spectrometry, Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, Utrecht University, Sorbonnelaan 16, 3584 CA Utrecht, The Netherlands.
J Proteome Res. 2006 Jun;5(6):1435-47. doi: 10.1021/pr0600529.
The cyclic nucleotide monophosphates cAMP and cGMP play an essential role in many signaling pathways. To analyze which proteins do interact with these second messenger molecules, we developed a chemical proteomics approach using cAMP and cGMP immobilized onto agarose beads, via flexible linkers in the 2- and 8-position of the nucleotide. Optimization of the affinity pull-down procedures in lysates of HEK293 cells revealed that a large variety of proteins could be pulled down specifically. Identification of these proteins by mass spectrometry showed that many of these proteins were indeed genuine cAMP or cGMP binding proteins. However, additionally many of the pulled-down proteins were more abundant AMP/ADP/ATP, GMP/GDP/GTP, or general DNA/RNA binding proteins. Therefore, a sequential elution protocol was developed, eluting proteins from the beads using solutions containing ADP, GDP, cGMP, and/or cAMP, respectively. Using this protocol, we were able to sequentially and selectively elute ADP, GDP, and DNA binding proteins. The fraction left on the beads was further enriched, for cAMP/cGMP binding proteins. Transferring this protocol to the analysis of the cGMP/cAMP "interactome" in rat heart ventricular tissue enabled the specific pull-down of known cAMP/cGMP binding proteins such as cAMP and cGMP dependent protein kinases PKA and PKG, several phosphodiesterases and 6 AKAPs, that interact with PKA. Among the latter class of proteins was the highly abundant sphingosine kinase type1-interating protein (SKIP), recently proposed to be a potential AKAP. Further bioinformatics analysis endorses that SKIP is indeed a genuine PKA interacting protein, which is highly abundant in heart ventricular tissue.
环核苷酸单磷酸cAMP和cGMP在许多信号通路中发挥着重要作用。为了分析哪些蛋白质与这些第二信使分子相互作用,我们开发了一种化学蛋白质组学方法,该方法使用通过核苷酸2位和8位的柔性接头固定在琼脂糖珠上的cAMP和cGMP。对HEK293细胞裂解物中亲和下拉程序的优化表明,可以特异性下拉多种蛋白质。通过质谱鉴定这些蛋白质表明,其中许多蛋白质确实是真正的cAMP或cGMP结合蛋白。然而,此外许多被下拉的蛋白质是更丰富的AMP/ADP/ATP、GMP/GDP/GTP或一般的DNA/RNA结合蛋白。因此,开发了一种顺序洗脱方案,分别使用含有ADP、GDP、cGMP和/或cAMP的溶液从珠子上洗脱蛋白质。使用该方案,我们能够顺序且选择性地洗脱ADP、GDP和DNA结合蛋白。珠子上剩余的部分进一步富集了cAMP/cGMP结合蛋白。将该方案应用于大鼠心室组织中cGMP/cAMP“相互作用组”的分析,能够特异性下拉已知的cAMP/cGMP结合蛋白,如cAMP和cGMP依赖性蛋白激酶PKA和PKG、几种磷酸二酯酶和6种与PKA相互作用的A激酶锚定蛋白(AKAP)。在后者这类蛋白质中,有高度丰富的1型鞘氨醇激酶相互作用蛋白(SKIP),最近有人提出它是一种潜在的AKAP。进一步的生物信息学分析证实,SKIP确实是一种真正的与PKA相互作用的蛋白,在心室组织中高度丰富。