Scholten Arjen, van Veen Toon A B, 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, Utrecht, the Netherlands.
J Proteome Res. 2007 May;6(5):1705-17. doi: 10.1021/pr060601a. Epub 2007 Apr 14.
Using a chemical proteomics approach, we efficiently enriched for the generally low abundant cAMP signaling proteins, and their interactors, directly from mouse ventricular tissue. The presence of undesired contaminating (noncyclic) nucleotide-binding proteins was diminished using a tailored sequential elution protocol. Through further optimization of this affinity purification and elution protocol, we were able to detect all known protein kinase A regulatory isoforms (PKA-R). Furthermore, 11 different A-kinase anchoring proteins (AKAPs) were detected. A proposed fusion protein of paralemmin 2 and AKAP2 could be decisively established as a novel AKAP at the protein level in ventricular tissue. When comparing this dataset of cAMP-affinity purified proteins with earlier data obtained with immobilized cGMP from rat ventricular tissue, we observe a large overlap in the retained proteins but also some clear differences. Furthermore, implementation of an in-depth analysis of in vivo phosphorylation sites on PKA-R revealed the presence of several differentially phosphorylated PKA-R isoforms. This illustrates yet another layer of functional regulation in cyclic nucleotide signaling. In general, our improved chemical proteomics screen offers a broad, but detailed, view on nature's complex diversity in cyclic nucleotide signaling mechanisms. Possibly different AKAP-isoforms may direct differentially phosphorylated PKA-R isoforms to different cellular compartments, providing a multifaceted platform for just this kinase.
我们采用化学蛋白质组学方法,直接从小鼠心室组织中高效富集通常丰度较低的环磷酸腺苷(cAMP)信号蛋白及其相互作用蛋白。通过定制的顺序洗脱方案,减少了不需要的污染性(非环状)核苷酸结合蛋白的存在。通过进一步优化这种亲和纯化和洗脱方案,我们能够检测到所有已知的蛋白激酶A调节亚型(PKA-R)。此外,还检测到11种不同的A激酶锚定蛋白(AKAP)。在心室组织的蛋白质水平上,可明确确定一种拟议的副连蛋白2和AKAP2融合蛋白为一种新型AKAP。当将此cAMP亲和纯化蛋白数据集与早期从大鼠心室组织中固定化环磷酸鸟苷(cGMP)获得的数据进行比较时,我们观察到保留蛋白中有很大重叠,但也有一些明显差异。此外,对PKA-R上体内磷酸化位点的深入分析表明存在几种差异磷酸化的PKA-R亚型。这说明了环核苷酸信号传导中另一层功能调节。总体而言,我们改进的化学蛋白质组学筛选为环核苷酸信号传导机制中自然界复杂的多样性提供了一个广泛而详细的视角。可能不同的AKAP亚型会将差异磷酸化的PKA-R亚型导向不同的细胞区室,为这种激酶提供一个多方面的平台。