Fundación Instituto Leloir and Instituto de Investigaciones Bioquímicas de Buenos Aires, Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina.
PLoS One. 2013 Apr 11;8(4):e59113. doi: 10.1371/journal.pone.0059113. Print 2013.
Insulin-degrading enzyme (IDE) is a neutral Zn(2+) peptidase that degrades short peptides based on substrate conformation, size and charge. Some of these substrates, including amyloid β (Aβ) are capable of self-assembling into cytotoxic oligomers. Based on IDE recognition mechanism and our previous report of the formation of a stable complex between IDE and intact Aβ in vitro and in vivo, we analyzed the possibility of a chaperone-like function of IDE. A proteolytically inactive recombinant IDE with Glu111 replaced by Gln (IDEQ) was used. IDEQ blocked the amyloidogenic pathway of Aβ yielding non-fibrillar structures as assessed by electron microscopy. Measurements of the kinetics of Aβ aggregation by light scattering showed that 1) IDEQ effect was promoted by ATP independent of its hydrolysis, 2) end products of Aβ-IDEQ co-incubation were incapable of "seeding" the assembly of monomeric Aβ and 3) IDEQ was ineffective in reversing Aβ aggregation. Moreover, Aβ aggregates formed in the presence of IDEQ were non-neurotoxic. IDEQ had no conformational effects upon insulin (a non-amyloidogenic protein under physiological conditions) and did not disturb insulin receptor activation in cultured cells. Our results suggest that IDE has a chaperone-like activity upon amyloid-forming peptides. It remains to be explored whether other highly conserved metallopeptidases have a dual protease-chaperone function to prevent the formation of toxic peptide oligomers from bacteria to mammals.
胰岛素降解酶(IDE)是一种中性 Zn(2+)肽酶,可根据底物构象、大小和电荷降解短肽。其中一些底物,包括淀粉样β(Aβ),能够自组装成细胞毒性寡聚物。基于 IDE 的识别机制以及我们之前关于 IDE 和完整 Aβ 在体外和体内形成稳定复合物的报告,我们分析了 IDE 具有伴侣样功能的可能性。使用 Glu111 被 Gln 取代的无蛋白水解活性的重组 IDE(IDEQ)。IDEQ 阻止了 Aβ 的淀粉样形成途径,通过电子显微镜评估得到非纤维结构。通过光散射测量 Aβ 聚集的动力学表明:1)IDEQ 效应在没有其水解的情况下通过 ATP 促进,2)Aβ-IDEQ 共孵育的终产物不能“引发”单体 Aβ 的组装,3)IDEQ 对 Aβ 聚集没有逆转作用。此外,在 IDEQ 存在下形成的 Aβ 聚集体没有神经毒性。IDEQ 对胰岛素(生理条件下非淀粉样形成蛋白)没有构象影响,也不会干扰培养细胞中胰岛素受体的激活。我们的结果表明,IDE 在淀粉样形成肽上具有伴侣样活性。其他高度保守的金属肽酶是否具有双重蛋白酶-伴侣功能,以防止从细菌到哺乳动物的有毒肽寡聚物的形成,还有待进一步研究。