Wohlgemuth Ingo, Lenz Christof, Urlaub Henning
Department of Physical Biochemistry, Max Planck Institute for Biophysical Chemistry, Goettingen, Germany.
Proteomics. 2015 Mar;15(5-6):862-79. doi: 10.1002/pmic.201400466. Epub 2015 Feb 6.
A majority of cellular functions are carried out by macromolecular complexes. A host of biochemical and spectroscopic methods exists to characterize especially protein/protein complexes, however there has been a lack of a universal method to determine protein stoichiometries. Peptide-based MS, especially as a complementary method to the MS analysis of intact protein complexes, has now been developed to a point where it can be employed to assay protein stoichiometries in a routine manner. While the experimental demands are still significant, peptide-based MS has been successfully applied to analyze stoichiometries for a variety of protein complexes from very different biological backgrounds. In this review, we discuss the requirements especially for targeted MS acquisition strategies to be used in this context, with a special focus on the interconnected experimental aspects of sample preparation, protein digestion, and peptide stability. In addition, different strategies for the introduction of quantitative peptide standards and their suitability for different scenarios are compared.
大多数细胞功能是由大分子复合物执行的。存在许多生化和光谱方法来表征特别是蛋白质/蛋白质复合物,然而一直缺乏一种确定蛋白质化学计量的通用方法。基于肽的质谱,特别是作为完整蛋白质复合物质谱分析的一种补充方法,现已发展到可以常规用于测定蛋白质化学计量的程度。虽然实验要求仍然很高,但基于肽的质谱已成功应用于分析来自非常不同生物学背景的各种蛋白质复合物的化学计量。在这篇综述中,我们讨论了在此背景下使用靶向质谱采集策略的要求,特别关注样品制备、蛋白质消化和肽稳定性等相互关联的实验方面。此外,还比较了引入定量肽标准的不同策略及其对不同情况的适用性。