Qian_2015_Angew.Chem.Int.Ed.Engl_54_5874

Reference

Title : Intracellular Delivery of Peptidyl Ligands by Reversible Cyclization: Discovery of a PDZ Domain Inhibitor that Rescues CFTR Activity - Qian_2015_Angew.Chem.Int.Ed.Engl_54_5874
Author(s) : Qian Z , Xu X , Amacher JF , Madden DR , Cormet-Boyaka E , Pei D
Ref : Angew Chem Int Ed Engl , 54 :5874 , 2015
Abstract :

A general strategy was developed for the intracellular delivery of linear peptidyl ligands through fusion to a cell-penetrating peptide and cyclization of the fusion peptides via a disulfide bond. The resulting cyclic peptides are cell permeable and have improved proteolytic stability. Once inside the cell, the disulfide bond is reduced to produce linear biologically active peptides. This strategy was applied to generate a cell-permeable peptide substrate for real-time detection of intracellular caspase activities during apoptosis and an inhibitor for the CFTR-associated ligand (CAL) PDZ domain as a potential treatment for cystic fibrosis.

PubMedSearch : Qian_2015_Angew.Chem.Int.Ed.Engl_54_5874
PubMedID: 25785567

Related information

Citations formats

Qian Z, Xu X, Amacher JF, Madden DR, Cormet-Boyaka E, Pei D (2015)
Intracellular Delivery of Peptidyl Ligands by Reversible Cyclization: Discovery of a PDZ Domain Inhibitor that Rescues CFTR Activity
Angew Chem Int Ed Engl 54 :5874

Qian Z, Xu X, Amacher JF, Madden DR, Cormet-Boyaka E, Pei D (2015)
Angew Chem Int Ed Engl 54 :5874