Department of Biochemical and Cellular Pharmacology, Genentech, South San Francisco, CA, USA.
Department of Structural Biology, Genentech, South San Francisco, CA, USA.
Anal Bioanal Chem. 2022 Sep;414(22):6601-6610. doi: 10.1007/s00216-022-04220-2. Epub 2022 Jul 12.
Proteases are critical proteins involved in cleaving substrates that may impact biological pathways, cellular processes, or disease progression. In the biopharmaceutical industry, modulating the levels of protease activity is an important strategy for mitigating many types of diseases. While a variety of analytical tools exist for characterizing substrate cleavages, in vitro functional screening for antibody inhibitors of protease activity using physiologically relevant intact protein substrates remains challenging. In addition, detecting such large protein substrates with high heterogeneity using high-throughput mass spectrometry screening has rarely been reported in the literature with concerns for assay robustness and sensitivity. In this study, we established a peptide-based in vitro functional screening assay for antibody inhibitors of mouse bone morphogenic protein 1 (mBMP1) metalloprotease using a heterogeneous recombinant 66-kDa mouse Procollagen I alpha 1 chain (mProcollagen) substrate. We compared several analytical tools including capillary gel electrophoresis Western blot (CE-Western blot), as well as both intact protein and peptide-based mass spectrometry (MS) to quantitate the mBMP1 proteolytic activity and its inhibition by antibodies using this heterogeneous mProcollagen substrate. We concluded that the peptide-based mass spectrometry screening assay was the most suitable approach in terms of throughput, sensitivity, and assay robustness. We then optimized our mBMP1 proteolysis reaction after characterizing the enzyme kinetics using the peptide-based MS assay. This assay resulted in Z' values ranging from 0.6 to 0.8 from the screening campaign. Among over 1200 antibodies screened, IC characterization was performed on the top candidate hits, which showed partial or complete inhibitory activities against mBMP1.
蛋白酶是涉及切割底物的关键蛋白,这些底物可能影响生物途径、细胞过程或疾病进展。在生物制药行业中,调节蛋白酶活性水平是减轻多种疾病的重要策略。虽然存在多种用于分析底物切割的分析工具,但使用生理相关的完整蛋白底物进行抗体抑制蛋白酶活性的体外功能筛选仍然具有挑战性。此外,使用高通量质谱筛选技术检测具有高度异质性的此类大型蛋白底物在文献中很少有报道,这主要与检测的稳健性和灵敏度有关。在这项研究中,我们使用异质重组 66 kDa 小鼠前胶原 I alpha 1 链 (mProcollagen) 底物,建立了一种基于肽的体外功能性筛选测定法,用于检测抗体抑制小鼠骨形态发生蛋白 1 (mBMP1) 金属蛋白酶的活性。我们比较了几种分析工具,包括毛细管凝胶电泳 Western blot(CE-Western blot),以及完整蛋白和基于肽的质谱(MS),以使用这种异质 mProcollagen 底物定量 mBMP1 的蛋白水解活性及其被抗体抑制的情况。我们得出的结论是,基于肽的质谱筛选测定法在通量、灵敏度和测定稳健性方面是最合适的方法。然后,我们使用基于肽的 MS 测定法对酶动力学进行了特征分析后,优化了我们的 mBMP1 蛋白水解反应。该测定法在筛选活动中产生了 Z'值范围为 0.6 至 0.8。在筛选的 1200 多种抗体中,对候选抗体进行了 IC 特征分析,结果显示这些候选抗体对 mBMP1 具有部分或完全抑制活性。