Department of Chemistry & Chemical Biology, Northeastern University, Boston, Massachusetts 02115, USA.
Anal Chem. 2012 Aug 21;84(16):7256-62. doi: 10.1021/ac301749h. Epub 2012 Aug 2.
Pepsin was immobilized on ethyl-bridged hybrid (BEH) particles, and digestion performance was evaluated in a completely online format, with the specific intent of using the particles for hydrogen-deuterium exchange mass spectrometry (HDX MS) experiments. Because the BEH particles are mechanically strong, they could withstand prolonged, continuous high-pressure at 10,000 psi. Online digestion was performed under isobaric conditions with continuous solvent flow, in contrast to other approaches where the pressure or flow is cycled. As expected, digestion efficiency at 10,000 psi was increased and reproducibly produced more peptic peptides versus digestion at 1000 psi. Prototype columns made with the BEH pepsin particles exhibited robust performance, and deuterium back-exchange was similar to that of other immobilized pepsin particles. These particles can be easily incorporated in existing HDX MS workflows to provide more peptide coverage in experiments where fast, efficient, and reproducible online pepsin digestion is desired.
胃蛋白酶固定在乙基桥联杂化(BEH)颗粒上,并以完全在线的形式评估其消化性能,其特定目的是将颗粒用于氢氘交换质谱(HDX MS)实验。由于 BEH 颗粒机械强度高,因此它们能够承受 10000psi 下的长时间连续高压。在线消化在等压条件下进行,连续溶剂流动,与其他方法中压力或流量循环形成对比。如预期的那样,在 10000psi 下的消化效率提高,并且与在 1000psi 下的消化相比,可重复性地产生更多的胃肽。用 BEH 胃蛋白酶颗粒制成的原型柱表现出稳健的性能,氘回交换与其他固定化胃蛋白酶颗粒相似。这些颗粒可以轻松地纳入现有的 HDX MS 工作流程中,在需要快速、高效和可重复的在线胃蛋白酶消化的实验中提供更多的肽覆盖。