首页> 外文期刊>Marine Drugs >Cyclisation Increases the Stability of the Sea Anemone Peptide APETx2 but Decreases Its Activity at Acid-Sensing Ion Channel 3
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Cyclisation Increases the Stability of the Sea Anemone Peptide APETx2 but Decreases Its Activity at Acid-Sensing Ion Channel 3

机译:环化可提高海葵肽APETx2的稳定性,但会降低其在酸敏感离子通道3上的活性

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摘要

APETx2 is a peptide isolated from the sea anemone Anthopleura elegantissima. It is the most potent and selective inhibitor of acid-sensing ion channel 3 (ASIC3) and it is currently in preclinical studies as a novel analgesic for the treatment of chronic inflammatory pain. As a peptide it faces many challenges in the drug development process, including the potential lack of stability often associated with therapeutic peptides. In this study we determined the susceptibility of wild-type APETx2 to trypsin and pepsin and tested the applicability of backbone cyclisation as a strategy to improve its resistance to enzymatic degradation. Cyclisation with either a six-, seven- or eight-residue linker vastly improved the protease resistance of APETx2 but substantially decreased its potency against ASIC3. This suggests that either the N- or C-terminus of APETx2 is involved in its interaction with the channel, which we confirmed by making N- and C-terminal truncations. Truncation of either terminus, but especially the N-terminus, has detrimental effects on the ability of APETx2 to inhibit ASIC3. The current work indicates that cyclisation is unlikely to be a suitable strategy for stabilising APETx2, unless linkers can be engineered that do not interfere with binding to ASIC3.
机译:APETx2是从海葵Anthopleura Elegantissima中分离出的一种肽。它是酸敏感离子通道3(ASIC3)的最有效和选择性抑制剂,目前在临床前研究中,它是一种用于治疗慢性炎性疼痛的新型镇痛药。作为一种肽,它在药物开发过程中面临许多挑战,包括可能经常缺乏与治疗性肽有关的稳定性。在这项研究中,我们确定了野生型APETx2对胰蛋白酶和胃蛋白酶的敏感性,并测试了骨架环化作为提高其对酶降解抗性的策略的适用性。用六,七或八残基的接头环化大大改善了APETx2的蛋白酶抗性,但大大降低了其对ASIC3的效力。这表明APETx2的N端或C端参与了其与通道的相互作用,我们通过进行N端和C端截短来证实这一点。任一末端(特别是N末端)的截短都会对APETx2抑制ASIC3的能力产生不利影响。当前的工作表明,除非可以设计不干扰与ASIC3结合的接头,否则环化不太可能是稳定APETx2的合适策略。

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