Cones and Cone Pathways Remain Functional in Advanced Retinal Degeneration

Author:

Ellis Erika M.ORCID,Paniagua Antonio E.,Scalabrino Miranda L.ORCID,Thapa Mishek,Rathinavelu Jay,Jiao Yuekan,Williams David S.,Field Greg D.ORCID,Fain Gordon L.ORCID,Sampath Alapakkam P.ORCID

Abstract

ABSTRACTMost defects causing retinal degeneration in retinitis pigmentosa (RP) are rod-specific mutations, but the subsequent degeneration of cones, which produces loss of daylight vision and high-acuity perception, is the most debilitating feature of the disease. To understand better why cones degenerate and how cone vision might be restored, we have made the first single-cell recordings of light responses from degenerating cones and retinal interneurons after most rods have died and cones have lost their outer-segment disk membranes and synaptic pedicles. We show that degenerating cones have functional cyclic-nucleotide-gated channels and can continue to give light responses, apparently produced by opsin localized either to small areas of organized membrane near the ciliary axoneme or distributed throughout the inner segment. Light responses of second-order horizontal and bipolar cells are smaller and less sensitive but surprisingly similar to those of normal retina. Furthermore, retinal output as reflected in responses of ganglion cells is largely intact at cone-mediated light levels. Together, these findings show that cones and their retinal pathways can remain functional even as degeneration is progressing, an encouraging result for future research aimed at enhancing the light sensitivity of residual cones to restore vision in patients with genetically inherited retinal degeneration.

Publisher

Cold Spring Harbor Laboratory

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