Department of Chemical Biology, Faculty of Biotechnology, University of Wrocław, F. Joliot-Curie 14a, Wrocław 50-383, Poland.
Michael Barber Centre for Collaborative Mass Spectrometry, Manchester Institute of Biotechnology, 131 Princess Street, Manchester M1 7DN, U.K.
J Proteome Res. 2024 Aug 2;23(8):3626-3637. doi: 10.1021/acs.jproteome.4c00271. Epub 2024 Jul 12.
Within the intricate landscape of the proteome, approximately 30% of all proteins bind metal ions. This repertoire is even larger when considering all the different forms of a protein, known as proteoforms. Here, we propose the term "metalloforms" to refer to different structural or functional variations of a protein resulting from the binding of various hetero- or homogeneous metal ions. Using human Cu(I)/Zn(II)-metallothionein-3 as a representative model, we developed a chemical proteomics strategy to simultaneously differentiate and map Zn(II) and Cu(I) metal binding sites. In the first labeling step, -ethylmaleimide reacts with Cysteine (Cys), resulting in the dissociation of all Zn(II) ions while Cu(I) remains bound to the protein. In the second labeling step, iodoacetamide is utilized to label Cu(I)-bound Cys residues. Native mass spectrometry (MS) was used to determine the metal/labeling protein stoichiometries, while bottom-up/top-down MS was used to map the Cys-labeled residues. Next, we used a developed methodology to interrogate an isolated rabbit liver metallothionein fraction containing three metallothionein-2 isoforms and multiple Cd(II)/Zn(II) metalloforms. The approach detailed in this study thus holds the potential to decode the metalloproteoform diversity within other proteins.
在蛋白质组学的复杂领域中,大约 30%的蛋白质结合金属离子。当考虑到蛋白质的所有不同形式(即蛋白质变体)时,这个数字会更大。在这里,我们提出“金属变体”一词来指代由于结合各种异质或同质金属离子而导致的蛋白质的不同结构或功能变化。我们使用人 Cu(I)/Zn(II)-金属硫蛋白-3 作为代表性模型,开发了一种化学蛋白质组学策略,以同时区分和绘制 Zn(II)和 Cu(I)金属结合位点。在第一步标记步骤中,-乙基马来酰亚胺与半胱氨酸(Cys)反应,导致所有 Zn(II)离子解离,而 Cu(I)仍与蛋白质结合。在第二步标记步骤中,碘乙酰胺用于标记 Cu(I)-结合的 Cys 残基。我们使用纳升电喷雾质谱(MS)来确定金属/标记蛋白的化学计量比,而使用自上而下/自下而上的 MS 来绘制 Cys 标记的残基。接下来,我们使用开发的方法来研究含有三种金属硫蛋白-2 同工型和多个 Cd(II)/Zn(II)金属变体的分离兔肝金属硫蛋白级分。本研究中详细介绍的方法因此有可能解码其他蛋白质中的金属蛋白变体多样性。