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向日葵胰蛋白酶抑制剂-1,胰蛋白酶抑制剂肽及其类似物的蛋白水解研究。

Sunflower trypsin inhibitor-1, proteolytic studies on a trypsin inhibitor peptide and its analogs.

机构信息

CSIRO Livestock Industries, 306 Carmody Road, St Lucia 4067, QLD, Australia.

出版信息

Biopolymers. 2010;94(5):665-72. doi: 10.1002/bip.21415.

Abstract

Sunflower trypsin inhibitor-1 (SFTI-1) is a 14 amino acid cyclic peptide from sunflower seeds, which possesses exceptionally potent trypsin-inhibitory activity, and has promise as a stable peptide-based drug template. Within its compact structure, SFTI-1 combines a head-to-tail cyclized backbone and a disulfide bond. In this study, we synthesized a range of acyclic and disulfide-deficient analogs of SFTI-1 to investigate enzyme-assisted cyclization of the peptide backbone and proteolytic degradation that occurs as a result of incubation with trypsin. Electrospray and matrix-assisted laser desorption ionization mass spectrometry allowed the characterization of a range of novel degradation products and elucidation of the time-course for cyclization and/or proteolysis. Trypsin displayed the ability to resynthesize the scissile bond(s) and hence cyclize two of the linear permutants, whereas irreversible degradation was observed for another two permutants. An interesting ring contraction mediated by trypsin was observed, supporting a role for protease catalyzed splicing as a way of increasing the combinatorial diversity of cyclic peptides in nature. Disulfide-deficient mutants were degraded within minutes, emphasizing the critical role of the cysteine bridge in maintaining proteolytic stability of SFTI-1. Overall, the study provides additional support for the proposal that naturally occurring cyclic peptides like SFTI-1 are biosynthesized by proteolytic enzymes effectively catalyzing the reverse of their normal reaction to make, rather than break peptide bonds.

摘要

向日葵胰蛋白酶抑制剂-1(SFTI-1)是一种来自向日葵种子的 14 个氨基酸环肽,具有非常强的胰蛋白酶抑制活性,有望成为一种稳定的基于肽的药物模板。在其紧凑的结构中,SFTI-1 结合了头尾环化的骨架和一个二硫键。在这项研究中,我们合成了一系列非环和缺乏二硫键的 SFTI-1 类似物,以研究酶辅助的肽骨架环化和与胰蛋白酶孵育时发生的蛋白水解降解。电喷雾和基质辅助激光解吸电离质谱允许对一系列新型降解产物进行表征,并阐明环化和/或蛋白水解的时程。胰蛋白酶显示出重新合成裂解键的能力,因此可以环化两种线性变体,而另外两种变体则观察到不可逆的降解。观察到由胰蛋白酶介导的有趣的环收缩,支持蛋白酶催化拼接作为增加天然中环肽组合多样性的一种方式。缺乏二硫键的突变体在数分钟内降解,强调了半胱氨酸桥在维持 SFTI-1 的蛋白水解稳定性方面的关键作用。总的来说,该研究进一步支持了这样一种观点,即像 SFTI-1 这样的天然存在的环肽是通过蛋白酶有效地催化其正常反应的逆反应而生物合成的,而不是破坏肽键。

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