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基于植物来源的环肽 sunflower trypsin inhibitor-1 设计强效糜蛋白酶抑制剂。

Engineering potent mesotrypsin inhibitors based on the plant-derived cyclic peptide, sunflower trypsin inhibitor-1.

机构信息

Institute for Molecular Bioscience, The University of Queensland, Brisbane, QLD, 4072, Australia.

Institute for Molecular Bioscience, The University of Queensland, Brisbane, QLD, 4072, Australia.

出版信息

Eur J Med Chem. 2018 Jul 15;155:695-704. doi: 10.1016/j.ejmech.2018.06.029. Epub 2018 Jun 21.

Abstract

Plants produce a diverse range of peptides and proteins that inhibit the activity of different serine proteases. The value of these inhibitors not only stems from their native role(s) in planta, but they are also regarded as promising templates for inhibitor engineering. Interest in this field has grown rapidly in recent years, particularly for therapeutic applications. The serine protease mesotrypsin has been implicated in several cancers, but is a challenging target for inhibitor engineering as a number of serine protease inhibitors that typically display broad-range activity show limited activity against mesotrypsin. In this study, we use a cyclic peptide isolated from sunflower seeds, sunflower trypsin inhibitor-1 (SFTI-1), as a scaffold for engineering potent mesotrypsin inhibitors. SFTI-1 comprises 14-amino acids and is a potent inhibitor of human cationic trypsin (K = 30 ± 0.8 pM) but shows 165,000-fold weaker activity against mesotrypsin (K = 4.96 ± 0.2 μM). Using an inhibitor library based on SFTI-1, we show that the inhibitor's P2' residue (Ile) is a key contributor to SFTI-1's limited activity against mesotrypsin. Substituting P2' Ile with chemically diverse amino acids, including non-canonical aromatic residues, produced new inhibitor variants that maintained a similar structure to SFTI-1 and showed marked improvements in activity (exceeding 100-fold). An assessment of the activity of the new inhibitors against closely-related trypsin paralogs revealed that the improved activity against mesotrypsin was accompanied by a loss in activity against off-target proteases, such that several engineered variants showed comparable activity against mesotrypsin and human cationic trypsin. Together, these findings identify potent mesotrypsin inhibitors that are suitable for further optimisation studies and demonstrate the potential gains in activity and selectivity that can be achieved by optimising the P2' residue, particularly for engineered SFTI-based inhibitors.

摘要

植物产生多种抑制不同丝氨酸蛋白酶活性的肽和蛋白质。这些抑制剂的价值不仅源于其在植物中的天然作用,还因为它们被认为是抑制剂工程的有前途的模板。近年来,该领域的兴趣迅速增长,特别是在治疗应用方面。糜蛋白酶已被牵连到几种癌症中,但作为抑制剂工程的一个具有挑战性的靶点,因为许多通常具有广谱活性的丝氨酸蛋白酶抑制剂对糜蛋白酶的活性有限。在这项研究中,我们使用一种从向日葵种子中分离出来的环状肽,即向日葵胰蛋白酶抑制剂-1(SFTI-1)作为工程强效糜蛋白酶抑制剂的支架。SFTI-1 由 14 个氨基酸组成,是人类阳离子胰蛋白酶的有效抑制剂(K=30±0.8 pM),但对糜蛋白酶的活性弱 165,000 倍(K=4.96±0.2μM)。使用基于 SFTI-1 的抑制剂文库,我们表明抑制剂的 P2'残基(Ile)是 SFTI-1 对糜蛋白酶活性有限的关键贡献者。用包括非经典芳香族残基在内的化学多样性氨基酸替代 P2' Ile,产生了新的抑制剂变体,这些变体保持与 SFTI-1 相似的结构,并显示出显著提高的活性(超过 100 倍)。对新抑制剂对密切相关的胰蛋白酶同工酶的活性评估表明,对糜蛋白酶活性的提高伴随着对靶外蛋白酶活性的丧失,以至于几种工程变体对糜蛋白酶和人阳离子胰蛋白酶表现出相当的活性。总之,这些发现确定了强效的糜蛋白酶抑制剂,它们适合进一步优化研究,并证明了通过优化 P2'残基可以实现的活性和选择性的潜在提高,特别是对于基于 SFTI 的工程抑制剂。

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