Department of Neurology, University of Bonn, 53127 Bonn, Germany.
J Biol Chem. 2011 Jul 1;286(26):22711-5. doi: 10.1074/jbc.C110.217893. Epub 2011 May 16.
Insulin-degrading enzyme (IDE) is a Zn(2+) metalloprotease with a characteristic inverted catalytic motif. IDE is ubiquitously expressed and degrades peptide substrates including insulin, endorphin, and the amyloid-β peptide. Although IDE is mainly expressed in the cytosol, it can also be found on the cell surface and in secreted form in extracellular fluids. As IDE lacks a characteristic signal sequence that targets the protein to the classical secretory pathway, release of the enzyme involves non-conventional mechanisms. However, functional domains of IDE involved in its secretion remain elusive. By bioinformatical, biochemical, and cell biological methods, we identified a novel amino acid motif ((853)EKPPHY(858)) close to the C terminus of IDE and characterized its function in the non-conventional secretion of the protein. Because of its close homology to an amino acid sequence found in bacterial proteins belonging to the SlyX family, we propose to call it the SlyX motif. Mutagenesis revealed that deletion of this motif strongly decreased the release of IDE, whereas deletion of a potential microbody-targeting signal at the extreme C terminus had little effect on secretion. The combined data indicate that the non-conventional secretion of IDE is regulated by the newly identified SlyX motif.
胰岛素降解酶(IDE)是一种具有特征性反转催化基序的 Zn(2+)金属蛋白酶。IDE 广泛表达,可降解包括胰岛素、内啡肽和淀粉样β肽在内的肽底物。尽管 IDE 主要表达在细胞质中,但它也可以在细胞表面和细胞外液的分泌形式中找到。由于 IDE 缺乏将蛋白质靶向经典分泌途径的特征信号序列,因此酶的释放涉及非常规机制。然而,涉及 IDE 分泌的功能结构域仍然难以捉摸。通过生物信息学、生化和细胞生物学方法,我们在 IDE 的 C 端附近鉴定出一个新的氨基酸基序 ((853)EKPPHY(858)),并对其在蛋白质非经典分泌中的功能进行了表征。由于其与属于 SlyX 家族的细菌蛋白中发现的氨基酸序列具有密切的同源性,我们提议将其称为 SlyX 基序。突变分析表明,该基序的缺失强烈降低了 IDE 的释放,而极端 C 端的潜在微体靶向信号缺失对分泌几乎没有影响。综合数据表明,IDE 的非经典分泌受新鉴定的 SlyX 基序调节。