Department of Structural Pathology, Institute of Nephrology, Graduate School of Medical and Dental Sciences, Niigata University , Niigata, Japan.
J Proteome Res. 2014 Mar 7;13(3):1636-46. doi: 10.1021/pr401122m. Epub 2014 Feb 17.
Performing a comprehensive nonbiased proteome analysis is an extraordinary challenge due to sample complexity and wide dynamic range, especially in eukaryotic tissues. Thus, prefractionation steps conducted prior to mass spectrometric analysis are critically important to reduce complex biological matrices and allow in-depth analysis. Here we demonstrated the use of OFFGel prefractionation to identify more low abundant and hydrophobic proteins than in a nonfractionated sample. Moreover, OFFGel prefractionation of a kidney protein sample was able to unveil protein functional relevance by detecting PTMs, especially when prefractionation was augmented with a targeted enrichment strategy such as TiO₂ phospho-enrichment. The OFFGel-TiO₂ combination used in this study was comparable to other global phosphoproteomics approaches (SCX-TiO₂, ERLIC-TiO₂, or HILIC-TiO₂). The detailed mouse kidney proteome with the phosphopeptide enrichment presented here serves as a useful platform for a better understanding of how the renal protein modification machinery works and, ultimately, will contribute to our understanding of pathological processes as well as normal physiological renal functions.
进行全面的无偏蛋白质组分析是一项艰巨的挑战,这主要是由于样本的复杂性和广泛的动态范围,尤其是在真核组织中。因此,在进行质谱分析之前进行预分级步骤对于降低复杂的生物基质并允许进行深入分析至关重要。在这里,我们证明了 OFFGel 预分级可用于鉴定比非分级样品更多的低丰度和疏水性蛋白质。此外,通过检测 PTMs,特别是当预分级与 TiO₂磷酸化富集等靶向富集策略结合使用时,OFFGel 预分级可揭示蛋白质的功能相关性。本研究中使用的 OFFGel-TiO₂组合与其他全局磷酸蛋白质组学方法(SCX-TiO₂、ERLIC-TiO₂或 HILIC-TiO₂)相当。本文中呈现的详细的具有磷酸肽富集的小鼠肾脏蛋白质组可作为更好地理解肾脏蛋白质修饰机制的有用平台,最终将有助于我们理解病理过程以及正常的生理肾脏功能。