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Small Retinoprotective Peptides Reveal a Receptor-binding Region on Pigment Epithelium-derived Factor
Authors:Jason Kenealey  Preeti Subramanian  Antonella Comitato  Jeanee Bullock  Laura Keehan  Federica Polato  David Hoover  Valeria Marigo  S Patricia Becerra
Institution:From the National Eye Institute and ;the Center for Information Technology, National Institutes of Health, Bethesda, Maryland 20892.;the §Department of Life Sciences, University of Modena and Reggio Emilia, 41125 Modena, Italy, and ;the Department of Biochemistry and Molecular and Cellular Biology, Georgetown University, Washington, D. C. 20057
Abstract:The cytoprotective effects of pigment epithelium-derived factor (PEDF) require interactions between an as of a yet undefined region with a distinct ectodomain on the PEDF receptor (PEDF-R). Here we characterized the area in PEDF that interacts with PEDF-R to promote photoreceptor survival. Molecular docking studies suggested that the ligand binding site of PEDF-R interacts with the neurotrophic region of PEDF (44-mer, positions 78–121). Binding assays demonstrated that PEDF-R bound the 44-mer peptide. Moreover, peptide P1 from the PEDF-R ectodomain had affinity for the 44-mer and a shorter fragment within it, 17-mer (positions 98–114). Single residue substitutions to alanine along the 17-mer sequence were designed and tested for binding and biological activity. Altered 17-merR99A] did not bind to the P1 peptide, whereas 17-merH105A] had higher affinity than the unmodified 17-mer. Peptides 17-mer, 17-merH105A], and 44-mer exhibited cytoprotective effects in cultured retina R28 cells. Intravitreal injections of these peptides and PEDF in the rd1 mouse model of retinal degeneration decreased the numbers of dying photoreceptors, 17-merH105A] being most effective. The blocking peptide P1 hindered their protective effects both in retina cells and in vivo. Thus, in addition to demonstrating that the region composed of positions 98–114 of PEDF contains critical residues for PEDF-R interaction that mediates survival effects, the findings reveal distinct small PEDF fragments with neurotrophic effects on photoreceptors.
Keywords:cell death  cell surface receptor  molecular modeling  mouse  neuroprotection  peptide interaction  photoreceptor  protein structure  retina  serpin
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