Leiden University Medical Center, Center for Proteomics and Metabolomics, Albinusdreef 2, 2333 ZA, Leiden, The Netherlands.
DSM Biotechnology Center, Center for Enabling Innovation, Alexander Fleminglaan 1, 2613 AX, Delft, The Netherlands.
J Proteome Res. 2021 Oct 1;20(10):4875-4885. doi: 10.1021/acs.jproteome.1c00663. Epub 2021 Sep 13.
The prolyl-alanyl-specific endoprotease (EndoPro) is an industrial enzyme produced in . EndoPro is mainly used for food applications but also as a protease in proteomics. In-depth characterization of this enzyme is essential to understand its structural features and functionality. However, there is a lack of analytical methods capable of maintaining both the structural and functional integrity of separated proteoforms. In this study, we developed an anion exchange (AEX) method coupled to native mass spectrometry (MS) for profiling EndoPro proteoforms. Moreover, we investigated purified EndoPro proteoforms with complementary MS-based approaches, including released N-glycan and glycopeptide analysis, to obtain a comprehensive overview of the structural heterogeneity. We showed that EndoPro has at least three sequence variants and seven N-glycosylation sites occupied by high-mannose glycans that can be phosphorylated. Each glycosylation site showed high microheterogeneity with ∼20 glycans per site. The functional characterization of fractionated proteoforms revealed that EndoPro proteoforms remained active after AEX-separation and the specificity of these proteoforms did not depend on N-glycan phosphorylation. Nevertheless, our data confirmed a strong pH dependence of EndoPro cleavage activity. Altogether, our study demonstrates that AEX-MS is an excellent tool to characterize complex industrial enzymes under native conditions.
脯氨酰-丙氨酰特异性内肽酶(EndoPro)是一种在 中生产的工业酶。EndoPro 主要用于食品应用,但也可用作蛋白质组学中的蛋白酶。深入了解这种酶对于理解其结构特征和功能至关重要。然而,目前缺乏能够保持分离的蛋白形式结构和功能完整性的分析方法。在这项研究中,我们开发了一种阴离子交换(AEX)方法,与天然质谱(MS)联用,用于分析 EndoPro 蛋白形式。此外,我们还通过互补的基于 MS 的方法研究了纯化的 EndoPro 蛋白形式,包括释放的 N-糖链和糖肽分析,以全面了解结构异质性。我们表明,EndoPro 至少有三种序列变体和七个 N-糖基化位点被高甘露糖糖基占据,这些糖基可以被磷酸化。每个糖基化位点都表现出高度的微观异质性,每个位点有大约 20 个聚糖。分离的蛋白形式的功能特征表明,EndoPro 蛋白形式在 AEX 分离后仍然保持活性,并且这些蛋白形式的特异性不依赖于 N-糖基化的磷酸化。然而,我们的数据证实了 EndoPro 切割活性对 pH 值有很强的依赖性。总之,我们的研究表明,AEX-MS 是在天然条件下表征复杂工业酶的一种极好的工具。