Department of Chemical Sciences, University of Catania, 95125 Catania, Italy.
Institute of Crystallography, National Research Council, 95126 Catania, Italy.
Int J Mol Sci. 2019 Sep 10;20(18):4447. doi: 10.3390/ijms20184447.
Insulin-degrading enzyme (IDE) was applied to catalyze hydrolysis of Nociceptin/Orphanin 1-16 (OFQ/N) to show the involvement of the enzyme in degradation of neuropeptides engaged in pain transmission. Moreover, IDE degradative action towards insulin (Ins) was inhibited by the OFQ/N fragments, suggesting a possible regulatory mechanism in the central nervous system. It has been found that OFQ/N and Ins affect each other degradation by IDE, although in a different manner. Indeed, while the digestion of OFQ/N is significantly affected by the presence of Ins, the kinetic profile of the Ins hydrolysis is not affected by the presence of OFQ/N. However, the main hydrolytic fragments of OFQ/N produced by IDE exert inhibitory activity towards the IDE-mediated Ins degradation. Here, we present the results indicating that, besides Ins, IDE cleaves neuropeptides and their released fragments act as inhibitors of IDE activity toward Ins. Having in mind that IDE is present in the brain, which also contains Ins receptors, it cannot be excluded that this enzyme indirectly participates in neural communication of pain signals and that neuropeptides involved in pain transmission may contribute to the regulation of IDE activity. Finally, preliminary results on the metabolism of OFQ/N, carried out in the rat spinal cord homogenate in the presence of various inhibitors specific for different classes of proteases, show that OFQ/N proteolysis in rat spinal cord could be due, besides IDE, also to a cysteine protease not yet identified.
胰岛素降解酶(IDE)被应用于催化 Nociceptin/孤啡肽 1-16(OFQ/N)的水解,以显示该酶在参与疼痛传递的神经肽降解中的作用。此外,OFQ/N 片段抑制了 IDE 对胰岛素(Ins)的降解作用,提示在中枢神经系统中存在可能的调节机制。已经发现 OFQ/N 和 Ins 通过 IDE 相互影响对方的降解,尽管方式不同。事实上,虽然 OFQ/N 的消化明显受到 Ins 的存在的影响,但 Ins 水解的动力学特征不受 OFQ/N 的存在影响。然而,IDE 产生的 OFQ/N 的主要水解片段对 IDE 介导的 Ins 降解具有抑制活性。在这里,我们提出的结果表明,IDE 除了可以切割 Ins 之外,还可以切割神经肽,其释放的片段可作为 IDE 对 Ins 降解活性的抑制剂。鉴于 IDE 存在于大脑中,而大脑中也存在 Ins 受体,因此不能排除该酶间接参与疼痛信号的神经通讯,并且参与疼痛传递的神经肽可能有助于调节 IDE 活性。最后,在存在各种针对不同蛋白酶类别的特异性抑制剂的情况下,在大鼠脊髓匀浆中进行的 OFQ/N 代谢的初步结果表明,大鼠脊髓中 OFQ/N 的蛋白水解作用除了 IDE 之外,还可能是由尚未鉴定的一种半胱氨酸蛋白酶引起的。