Department of Plant Sciences, Plant Chemetics Laboratory, University of Oxford, Oxford, UK.
Chemische Biologie, Zentrum für Medizinische Biotechnologie, Fakultät für Biologie, Universität Duisburg-Essen, Essen, Germany.
Plant Biotechnol J. 2019 Aug;17(8):1670-1678. doi: 10.1111/pbi.13092. Epub 2019 Mar 14.
Co-expression of protease inhibitors like the tomato cystatin SlCYS8 is useful to increase recombinant protein production in plants, but key proteases involved in protein proteolysis are still unknown. Here, we performed activity-based protein profiling to identify proteases that are inhibited by SlCYS8 in agroinfiltrated Nicotiana benthamiana. We discovered that SlCYS8 selectively suppresses papain-like cysteine protease (PLCP) activity in both apoplastic fluids and total leaf extracts, while not affecting vacuolar-processing enzyme and serine hydrolase activity. A robust concentration-dependent inhibition of PLCPs occurred in vitro when purified SlCYS8 was added to leaf extracts, indicating direct cystatin-PLCP interactions. Activity-based proteomics revealed that nine different Cathepsin-L/-F-like PLCPs are strongly inhibited by SlCYS8 in leaves. By contrast, the activity of five other Cathepsin-B/-H-like PLCPs, as well as 87 Ser hydrolases, was unaffected by SlCYS8. SlCYS8 expression prevented protein degradation by inhibiting intermediate and mature isoforms of granulin-containing proteases from the Resistant-to-Desiccation-21 (RD21) PLCP subfamily. Our data underline the key role of endogenous PLCPs on recombinant protein degradation and reveal candidate proteases for depletion strategies.
蛋白酶抑制剂的共表达,如番茄半胱氨酸蛋白酶抑制剂 SlCYS8,可有效提高植物中重组蛋白的产量,但参与蛋白水解的关键蛋白酶仍不清楚。在这里,我们通过基于活性的蛋白谱分析来鉴定在农杆菌浸润的本氏烟中被 SlCYS8 抑制的蛋白酶。我们发现 SlCYS8 选择性地抑制质外体液和总叶提取物中的木瓜蛋白酶样半胱氨酸蛋白酶 (PLCP) 活性,而不影响液泡加工酶和丝氨酸水解酶活性。当纯化的 SlCYS8 添加到叶提取物中时,在体外会发生强烈的浓度依赖性 PLCP 抑制,表明半胱氨酸蛋白酶抑制剂与 PLCP 之间存在直接相互作用。基于活性的蛋白质组学揭示了 SlCYS8 在叶片中强烈抑制九种不同的组织蛋白酶-L/-F 样 PLCP。相比之下,SlCYS8 对五种其他组织蛋白酶-B/-H 样 PLCP 以及 87 种丝氨酸水解酶的活性没有影响。SlCYS8 的表达通过抑制包含抗干燥蛋白 21 (RD21) PLCP 亚家族的 granulin 的中间和成熟同工型来防止蛋白质降解。我们的数据强调了内源性 PLCPs 在重组蛋白降解中的关键作用,并揭示了候选蛋白酶用于消耗策略。