Department of Chemistry and Biochemistry, The University of Texas at Austin, 1 University Station A5300, Austin, TX 78712, USA.
Mol Cell Proteomics. 2012 Jul;11(7):O111.015826. doi: 10.1074/mcp.O111.015826. Epub 2012 Mar 5.
A protein's surface influences its role in protein-protein interactions and protein-ligand binding. Mass spectrometry can be used to give low resolution structural information about protein surfaces and conformations when used in combination with derivatization methods that target surface accessible amino acid residues. However, pinpointing the resulting modified peptides upon enzymatic digestion of the surface-modified protein is challenging because of the complexity of the peptide mixture and low abundance of modified peptides. Here a novel hydrazone reagent (NN) is presented that allows facile identification of all modified surface residues through a preferential cleavage upon activation by electron transfer dissociation coupled with a collision activation scan to pinpoint the modified residue in the peptide sequence. Using this approach, the correlation between percent reactivity and surface accessibility is demonstrated for two biologically active proteins, wheat eIF4E and PARP-1 Domain C.
蛋白质的表面会影响其在蛋白质-蛋白质相互作用和蛋白质-配体结合中的作用。当与针对表面可及氨基酸残基的衍生化方法结合使用时,质谱可用于提供关于蛋白质表面和构象的低分辨率结构信息。然而,由于肽混合物的复杂性和修饰肽的低丰度,在对表面修饰的蛋白质进行酶解后,精确定位得到的修饰肽具有挑战性。在这里,提出了一种新的腙试剂(NN),它可以通过电子转移解离(ETD)激活时的优先裂解,以及通过碰撞激活扫描来精确定位肽序列中的修饰残基,从而轻松鉴定所有修饰的表面残基。使用这种方法,针对两种具有生物活性的蛋白质,小麦 eIF4E 和 PARP-1 结构域 C,证明了反应性百分比和表面可及性之间的相关性。