Pharmaceutical Biochemistry and Bioanalytics, Pharmaceutical Institute, University of Bonn, An der Immenburg 4, D-53121, Bonn, Germany.
Biol Chem. 2022 Oct 19;403(11-12):1099-1105. doi: 10.1515/hsz-2022-0199. Print 2022 Nov 25.
Fe(III) heme is known to possess low catalytic activity when exposed to hydrogen peroxide and a reducing substrate. Efficient non-covalently linked Fe(III) heme-peptide complexes may represent suitable alternatives as a new group of green catalysts. Here, we evaluated a set of heme-peptide complexes by determination of their peroxidase-like activity and the kinetics of the catalytic conversion in both, the soluble and the immobilized state. We show the impact of peptide length on binding of the peptides to Fe(III) heme and the catalytic activity. Immobilization of the peptide onto a polymer support maintains the catalytic performance of the Fe(III) heme-peptide complex. This study thus opens up a new perspective with regard to the development of heterogeneous biocatalysts with a peroxidase-like activity.
当暴露于过氧化氢和还原底物时,已知 Fe(III)血红素的催化活性较低。高效的非共价连接的 Fe(III)血红素-肽复合物可能代表作为一类新的绿色催化剂的合适替代品。在这里,我们通过测定其过氧化物酶样活性和在可溶性和固定化状态下的催化转化动力学,评估了一组血红素-肽复合物。我们展示了肽长度对肽与 Fe(III)血红素结合和催化活性的影响。将肽固定在聚合物载体上保持了 Fe(III)血红素-肽复合物的催化性能。因此,这项研究为开发具有过氧化物酶样活性的非均相生物催化剂开辟了新的视角。