Department of Biochemistry , University of Missouri, Christopher S. Bond Life Sciences Center , Columbia , Missouri 65211 , United States.
J Proteome Res. 2018 May 4;17(5):1773-1783. doi: 10.1021/acs.jproteome.7b00756. Epub 2018 Apr 2.
Metabolic pathways often employ assemblies of individual enzymes to facilitate substrate channeling to improve thermodynamic efficiency and confer pathway directionality. It is often assumed that subunits to multienzyme complexes are coregulated and accumulate at fixed levels in vivo, reflecting complex stoichiometry. Such assumptions can be experimentally tested using modern tandem mass spectrometry, and herein we describe such an approach applied toward an important metabolic complex. The committed step of de novo fatty acid synthesis in the plastids of most plants is catalyzed by the multienzyme, heteromeric acetyl-CoA carboxylase (hetACCase). This complex is composed of four catalytic subunits and a recently discovered regulatory subunit resembling the biotin carboxyl carrier protein but lacking the biotinylation motif necessary for activity. To better understand this novel form of regulation, a targeted tandem mass-spectrometry-based assay was developed to absolutely quantify all subunits to the Arabidopsis thaliana hetACCase. After validation against pure, recombinant protein, this multiplexed assay was used to quantify hetACCase subunits in siliques in various stages of development. Quantitation provided a developmental profile of hetACCase and BADC protein expression that supports a recently proposed regulatory mechanism for hetACCase and demonstrates a promising application of targeted mass spectrometry for in vivo analysis of protein complexes.
代谢途径通常采用单个酶的组装来促进底物通道化,以提高热力学效率并赋予途径方向性。通常假设多酶复合物的亚基是核心调控的,并在体内以固定水平积累,反映出复杂的计量关系。这种假设可以使用现代串联质谱技术进行实验测试,本文描述了一种应用于重要代谢复合物的方法。大多数植物质体中从头合成脂肪酸的关键步骤是由多酶异源二聚体乙酰辅酶 A 羧化酶(hetACCase)催化的。该复合物由四个催化亚基和一个最近发现的调节亚基组成,类似于生物素羧基载体蛋白,但缺乏活性所必需的生物素化模体。为了更好地理解这种新形式的调节,开发了一种基于靶向串联质谱的测定法,以绝对定量拟南芥 hetACCase 的所有亚基。在用纯重组蛋白进行验证后,该多重测定法用于定量不同发育阶段的拟南芥角果中的 hetACCase 亚基。定量提供了 hetACCase 和 BADC 蛋白表达的发育谱,支持了 hetACCase 的最近提出的调节机制,并展示了靶向质谱法在体内分析蛋白质复合物方面的有前途的应用。