Dipartimento di Scienze Chimiche, Università di Catania, Viale Andrea Doria 6, 95125 Catania, Italy.
J Inorg Biochem. 2012 Dec;117:351-8. doi: 10.1016/j.jinorgbio.2012.06.010. Epub 2012 Jun 23.
Insulin degradation is a finely tuned process that plays a major role in controlling insulin action and most evidence supports IDE (insulin-degrading enzyme) as the primary degradative agent. However, the biomolecular mechanisms involved in the interaction between IDE and its substrates are often obscure, rendering the specific enzyme activity quite difficult to target. On the other hand, biometals, such as copper, aluminum and zinc, have an important role in pathological conditions such as Alzheimer's disease or diabetes mellitus. The metabolic disorders connected with the latter lead to some metallostasis alterations in the human body and many studies point at a high level of interdependence between diabetes and several cations. We have previously reported (Grasso et al., Chem. Eur. J. 17 (2011) 2752-2762) that IDE activity toward Aβ peptides can be modulated by metal ions. Here, we have investigated the effects of different metal ions on the IDE proteolytic activity toward insulin as well as a designed peptide comprising a portion of the insulin B chain (B20-30), which has a very low affinity for metal ions. The results obtained by different experimental techniques clearly show that IDE is irreversibly inhibited by copper(I) but is still able to process its substrates when it is bound to copper(II).
胰岛素降解是一个精细调节的过程,在控制胰岛素作用中起着主要作用,大多数证据支持 IDE(胰岛素降解酶)是主要的降解剂。然而,IDE 与其底物之间相互作用的生物分子机制通常不清楚,使得特定的酶活性很难成为靶向。另一方面,生物金属,如铜、铝和锌,在阿尔茨海默病或糖尿病等病理条件下起着重要作用。与后者相关的代谢紊乱导致人体内一些金属稳态的改变,许多研究表明糖尿病与几种阳离子之间存在高度的相互依存关系。我们之前曾报道(Grasso 等人,Chem. Eur. J. 17(2011)2752-2762),IDE 对 Aβ肽的活性可以被金属离子调节。在这里,我们研究了不同金属离子对 IDE 对胰岛素以及包含胰岛素 B 链(B20-30)一部分的设计肽的蛋白水解活性的影响,该肽对金属离子的亲和力非常低。不同实验技术得到的结果清楚地表明,铜(I)不可逆地抑制 IDE,但当与铜(II)结合时,它仍能够处理其底物。