Bryson Bryan D, Del Rosario Amanda M, Gootenberg Jonathan S, Yaffe Michael B, White Forest M
Department of Biological Engineering, MIT, Cambridge, MA, USA; David H. Koch Institute for Integrative Cancer Research, MIT, Cambridge, MA, USA.
Proteomics. 2015 May;15(9):1470-5. doi: 10.1002/pmic.201400401. Epub 2015 Mar 5.
MS-based analysis of the acetylproteome has highlighted a role for acetylation in a wide array of biological processes including gene regulation, metabolism, and cellular signaling. To date, anti-acetyllysine antibodies have been used as the predominant affinity reagent for enrichment of acetyllysine-containing peptides and proteins; however, these reagents suffer from high nonspecific binding and lot-to-lot variability. Bromodomains represent potential affinity reagents for acetylated proteins and peptides, given their natural role in recognition of acetylated sequence motifs in vivo. To evaluate their efficacy, we generated recombinant proteins representing all known yeast bromodomains. Bromodomain specificity for acetylated peptides was determined using degenerate peptide arrays, leading to the observation that different bromodomains display a wide array of binding specificities. Despite their relatively weak affinity, we demonstrate the ability of selected bromodomains to enrich acetylated peptides from a complex biological mixture prior to mass spectrometric analysis. Finally, we demonstrate a method for improving the utility of bromodomain enrichment for MS through engineering novel affinity reagents using combinatorial tandem bromodomain pairs.
基于质谱的乙酰化蛋白质组分析突出了乙酰化在包括基因调控、代谢和细胞信号传导等广泛生物过程中的作用。迄今为止,抗乙酰赖氨酸抗体一直是富集含乙酰赖氨酸肽和蛋白质的主要亲和试剂;然而,这些试剂存在高非特异性结合和批次间差异的问题。鉴于其在体内识别乙酰化序列基序的天然作用,溴结构域代表了用于乙酰化蛋白质和肽的潜在亲和试剂。为了评估它们的功效,我们生成了代表所有已知酵母溴结构域的重组蛋白。使用简并肽阵列确定了溴结构域对乙酰化肽的特异性,从而观察到不同的溴结构域表现出广泛的结合特异性。尽管它们的亲和力相对较弱,但我们证明了所选溴结构域在质谱分析之前从复杂生物混合物中富集乙酰化肽的能力。最后,我们展示了一种通过使用组合串联溴结构域对设计新型亲和试剂来提高溴结构域富集用于质谱分析的效用的方法。