Cargando…

SARM1 deficiency promotes rod and cone photoreceptor cell survival in a model of retinal degeneration

Retinal degeneration is the leading cause of incurable blindness worldwide and is characterised by progressive loss of light-sensing photoreceptors in the neural retina. SARM1 is known for its role in axonal degeneration, but a role for SARM1 in photoreceptor cell degeneration has not been reported....

Descripción completa

Detalles Bibliográficos
Autores principales: Ozaki, Ema, Gibbons, Luke, Neto, Nuno GB, Kenna, Paul, Carty, Michael, Humphries, Marian, Humphries, Pete, Campbell, Matthew, Monaghan, Michael, Bowie, Andrew, Doyle, Sarah L
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7184027/
https://www.ncbi.nlm.nih.gov/pubmed/32312889
http://dx.doi.org/10.26508/lsa.201900618
_version_ 1783526533589106688
author Ozaki, Ema
Gibbons, Luke
Neto, Nuno GB
Kenna, Paul
Carty, Michael
Humphries, Marian
Humphries, Pete
Campbell, Matthew
Monaghan, Michael
Bowie, Andrew
Doyle, Sarah L
author_facet Ozaki, Ema
Gibbons, Luke
Neto, Nuno GB
Kenna, Paul
Carty, Michael
Humphries, Marian
Humphries, Pete
Campbell, Matthew
Monaghan, Michael
Bowie, Andrew
Doyle, Sarah L
author_sort Ozaki, Ema
collection PubMed
description Retinal degeneration is the leading cause of incurable blindness worldwide and is characterised by progressive loss of light-sensing photoreceptors in the neural retina. SARM1 is known for its role in axonal degeneration, but a role for SARM1 in photoreceptor cell degeneration has not been reported. SARM1 is known to mediate neuronal cell degeneration through depletion of essential metabolite NAD and induction of energy crisis. Here, we demonstrate that SARM1 is expressed in photoreceptors, and using retinal tissue explant, we confirm that activation of SARM1 causes destruction of NAD pools in the photoreceptor layer. Through generation of rho(−/−)sarm1(−/−) double knockout mice, we demonstrate that genetic deletion of SARM1 promotes both rod and cone photoreceptor cell survival in the rhodopsin knockout (rho(−/−)) mouse model of photoreceptor degeneration. Finally, we demonstrate that SARM1 deficiency preserves cone visual function in the surviving photoreceptors when assayed by electroretinography. Overall, our data indicate that endogenous SARM1 has the capacity to consume NAD in photoreceptor cells and identifies a previously unappreciated role for SARM1-dependent cell death in photoreceptor cell degeneration.
format Online
Article
Text
id pubmed-7184027
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Life Science Alliance LLC
record_format MEDLINE/PubMed
spelling pubmed-71840272020-04-30 SARM1 deficiency promotes rod and cone photoreceptor cell survival in a model of retinal degeneration Ozaki, Ema Gibbons, Luke Neto, Nuno GB Kenna, Paul Carty, Michael Humphries, Marian Humphries, Pete Campbell, Matthew Monaghan, Michael Bowie, Andrew Doyle, Sarah L Life Sci Alliance Research Articles Retinal degeneration is the leading cause of incurable blindness worldwide and is characterised by progressive loss of light-sensing photoreceptors in the neural retina. SARM1 is known for its role in axonal degeneration, but a role for SARM1 in photoreceptor cell degeneration has not been reported. SARM1 is known to mediate neuronal cell degeneration through depletion of essential metabolite NAD and induction of energy crisis. Here, we demonstrate that SARM1 is expressed in photoreceptors, and using retinal tissue explant, we confirm that activation of SARM1 causes destruction of NAD pools in the photoreceptor layer. Through generation of rho(−/−)sarm1(−/−) double knockout mice, we demonstrate that genetic deletion of SARM1 promotes both rod and cone photoreceptor cell survival in the rhodopsin knockout (rho(−/−)) mouse model of photoreceptor degeneration. Finally, we demonstrate that SARM1 deficiency preserves cone visual function in the surviving photoreceptors when assayed by electroretinography. Overall, our data indicate that endogenous SARM1 has the capacity to consume NAD in photoreceptor cells and identifies a previously unappreciated role for SARM1-dependent cell death in photoreceptor cell degeneration. Life Science Alliance LLC 2020-04-20 /pmc/articles/PMC7184027/ /pubmed/32312889 http://dx.doi.org/10.26508/lsa.201900618 Text en © 2020 Ozaki et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Ozaki, Ema
Gibbons, Luke
Neto, Nuno GB
Kenna, Paul
Carty, Michael
Humphries, Marian
Humphries, Pete
Campbell, Matthew
Monaghan, Michael
Bowie, Andrew
Doyle, Sarah L
SARM1 deficiency promotes rod and cone photoreceptor cell survival in a model of retinal degeneration
title SARM1 deficiency promotes rod and cone photoreceptor cell survival in a model of retinal degeneration
title_full SARM1 deficiency promotes rod and cone photoreceptor cell survival in a model of retinal degeneration
title_fullStr SARM1 deficiency promotes rod and cone photoreceptor cell survival in a model of retinal degeneration
title_full_unstemmed SARM1 deficiency promotes rod and cone photoreceptor cell survival in a model of retinal degeneration
title_short SARM1 deficiency promotes rod and cone photoreceptor cell survival in a model of retinal degeneration
title_sort sarm1 deficiency promotes rod and cone photoreceptor cell survival in a model of retinal degeneration
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7184027/
https://www.ncbi.nlm.nih.gov/pubmed/32312889
http://dx.doi.org/10.26508/lsa.201900618
work_keys_str_mv AT ozakiema sarm1deficiencypromotesrodandconephotoreceptorcellsurvivalinamodelofretinaldegeneration
AT gibbonsluke sarm1deficiencypromotesrodandconephotoreceptorcellsurvivalinamodelofretinaldegeneration
AT netonunogb sarm1deficiencypromotesrodandconephotoreceptorcellsurvivalinamodelofretinaldegeneration
AT kennapaul sarm1deficiencypromotesrodandconephotoreceptorcellsurvivalinamodelofretinaldegeneration
AT cartymichael sarm1deficiencypromotesrodandconephotoreceptorcellsurvivalinamodelofretinaldegeneration
AT humphriesmarian sarm1deficiencypromotesrodandconephotoreceptorcellsurvivalinamodelofretinaldegeneration
AT humphriespete sarm1deficiencypromotesrodandconephotoreceptorcellsurvivalinamodelofretinaldegeneration
AT campbellmatthew sarm1deficiencypromotesrodandconephotoreceptorcellsurvivalinamodelofretinaldegeneration
AT monaghanmichael sarm1deficiencypromotesrodandconephotoreceptorcellsurvivalinamodelofretinaldegeneration
AT bowieandrew sarm1deficiencypromotesrodandconephotoreceptorcellsurvivalinamodelofretinaldegeneration
AT doylesarahl sarm1deficiencypromotesrodandconephotoreceptorcellsurvivalinamodelofretinaldegeneration