Stefanidis Lazaros, Fusco Nicholas D, Cooper Samantha E, Smith-Carpenter Jillian E, Alper Benjamin J
Department of Chemistry , Sacred Heart University , Fairfield , Connecticut 06825 , United States.
Department of Chemistry and Biochemistry , Fairfield University , Fairfield , Connecticut 06824 , United States.
Biochemistry. 2018 Aug 14;57(32):4903-4914. doi: 10.1021/acs.biochem.8b00474. Epub 2018 Jul 25.
Insulin-degrading enzyme (IDE) is a 110 kDa chambered zinc metalloendopeptidase that degrades insulin, amyloid β, and other intermediate-sized aggregation prone peptides that adopt β-structures. Structural studies of IDE in complex with multiple physiological substrates have suggested a role for hydrophobic and aromatic residues of the IDE active site in substrate binding and catalysis. Here, we examine functional requirements for conserved hydrophobic and aromatic IDE active site residues that are positioned within 4.5 Å of IDE-bound insulin B chain and amyloid β peptides in the reported crystal structures for the respective enzyme-substrate complexes. Charge, size, hydrophobicity, aromaticity, and other functional group requirements for substrate binding IDE active site residues were examined through mutational analysis of the recombinant human enzyme and enzyme kinetic studies conducted using native and fluorogenic derivatives of human insulin and amyloid β peptides. A functional requirement for IDE active site residues F115, A140, F141, Y150, W199, F202, F820, and Y831 was established, and specific contributions of residue charge, size, and hydrophobicity to substrate binding, specificity, and proteolysis were demonstrated. IDE mutant alleles that exhibited enhanced or diminished proteolytic activity toward insulin or amyloid β peptides and derivative substrates were identified.
胰岛素降解酶(IDE)是一种110 kDa的带腔锌金属内肽酶,可降解胰岛素、淀粉样β蛋白以及其他易于形成β结构的中等大小的易聚集肽。对与多种生理底物结合的IDE进行的结构研究表明,IDE活性位点的疏水和芳香族残基在底物结合和催化中发挥作用。在已报道的相应酶-底物复合物晶体结构中,我们研究了位于与IDE结合的胰岛素B链和淀粉样β肽4.5 Å范围内的保守疏水和芳香族IDE活性位点残基的功能要求。通过对重组人酶进行突变分析以及使用人胰岛素和淀粉样β肽的天然和荧光衍生物进行酶动力学研究,考察了底物结合IDE活性位点残基的电荷、大小、疏水性、芳香性和其他官能团要求。确定了IDE活性位点残基F115、A140、F141、Y150、W199、F202、F820和Y831的功能要求,并证明了残基电荷、大小和疏水性对底物结合、特异性和蛋白水解的具体贡献。鉴定出了对胰岛素或淀粉样β肽及衍生物底物表现出增强或减弱蛋白水解活性的IDE突变等位基因。