Cargando…

Late‐onset retinal degeneration pathology due to mutations in CTRP5 is mediated through HTRA1

Late‐onset retinal degeneration (L‐ORD) is an autosomal dominant macular degeneration characterized by the formation of sub‐retinal pigment epithelium (RPE) deposits and neuroretinal atrophy. L‐ORD results from mutations in the C1q‐tumor necrosis factor‐5 protein (CTRP5), encoded by the CTRP5/C1QTNF...

Descripción completa

Detalles Bibliográficos
Autores principales: Chekuri, Anil, Zientara‐Rytter, Katarzyna, Soto‐Hermida, Angel, Borooah, Shyamanga, Voronchikhina, Marina, Biswas, Pooja, Kumar, Virender, Goodsell, David, Hayward, Caroline, Shaw, Peter, Stanton, Chloe, Garland, Donita, Subramani, Suresh, Ayyagari, Radha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6826137/
https://www.ncbi.nlm.nih.gov/pubmed/31385385
http://dx.doi.org/10.1111/acel.13011
_version_ 1783465022279647232
author Chekuri, Anil
Zientara‐Rytter, Katarzyna
Soto‐Hermida, Angel
Borooah, Shyamanga
Voronchikhina, Marina
Biswas, Pooja
Kumar, Virender
Goodsell, David
Hayward, Caroline
Shaw, Peter
Stanton, Chloe
Garland, Donita
Subramani, Suresh
Ayyagari, Radha
author_facet Chekuri, Anil
Zientara‐Rytter, Katarzyna
Soto‐Hermida, Angel
Borooah, Shyamanga
Voronchikhina, Marina
Biswas, Pooja
Kumar, Virender
Goodsell, David
Hayward, Caroline
Shaw, Peter
Stanton, Chloe
Garland, Donita
Subramani, Suresh
Ayyagari, Radha
author_sort Chekuri, Anil
collection PubMed
description Late‐onset retinal degeneration (L‐ORD) is an autosomal dominant macular degeneration characterized by the formation of sub‐retinal pigment epithelium (RPE) deposits and neuroretinal atrophy. L‐ORD results from mutations in the C1q‐tumor necrosis factor‐5 protein (CTRP5), encoded by the CTRP5/C1QTNF5 gene. To understand the mechanism underlying L‐ORD pathology, we used a human cDNA library yeast two‐hybrid screen to identify interacting partners of CTRP5. Additionally, we analyzed the Bruch's membrane/choroid (BM‐Ch) from wild‐type (Wt), heterozygous S163R Ctrp5 mutation knock‐in (Ctrp5(S163R/wt)), and homozygous knock‐in (Ctrp5(S163R/S163R)) mice using mass spectrometry. Both approaches showed an association between CTRP5 and HTRA1 via its C‐terminal PDZ‐binding motif, stimulation of the HTRA1 protease activity by CTRP5, and CTRP5 serving as an HTRA1 substrate. The S163R‐CTRP5 protein also binds to HTRA1 but is resistant to HTRA1‐mediated cleavage. Immunohistochemistry and proteomic analysis showed significant accumulation of CTRP5 and HTRA1 in BM‐Ch of Ctrp5(S163R/S163R) and Ctrp5(S163R/wt) mice compared with Wt. Additional extracellular matrix (ECM) components that are HTRA1 substrates also accumulated in these mice. These results implicate HTRA1 and its interaction with CTRP5 in L‐ORD pathology.
format Online
Article
Text
id pubmed-6826137
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-68261372019-12-01 Late‐onset retinal degeneration pathology due to mutations in CTRP5 is mediated through HTRA1 Chekuri, Anil Zientara‐Rytter, Katarzyna Soto‐Hermida, Angel Borooah, Shyamanga Voronchikhina, Marina Biswas, Pooja Kumar, Virender Goodsell, David Hayward, Caroline Shaw, Peter Stanton, Chloe Garland, Donita Subramani, Suresh Ayyagari, Radha Aging Cell Original Paper Late‐onset retinal degeneration (L‐ORD) is an autosomal dominant macular degeneration characterized by the formation of sub‐retinal pigment epithelium (RPE) deposits and neuroretinal atrophy. L‐ORD results from mutations in the C1q‐tumor necrosis factor‐5 protein (CTRP5), encoded by the CTRP5/C1QTNF5 gene. To understand the mechanism underlying L‐ORD pathology, we used a human cDNA library yeast two‐hybrid screen to identify interacting partners of CTRP5. Additionally, we analyzed the Bruch's membrane/choroid (BM‐Ch) from wild‐type (Wt), heterozygous S163R Ctrp5 mutation knock‐in (Ctrp5(S163R/wt)), and homozygous knock‐in (Ctrp5(S163R/S163R)) mice using mass spectrometry. Both approaches showed an association between CTRP5 and HTRA1 via its C‐terminal PDZ‐binding motif, stimulation of the HTRA1 protease activity by CTRP5, and CTRP5 serving as an HTRA1 substrate. The S163R‐CTRP5 protein also binds to HTRA1 but is resistant to HTRA1‐mediated cleavage. Immunohistochemistry and proteomic analysis showed significant accumulation of CTRP5 and HTRA1 in BM‐Ch of Ctrp5(S163R/S163R) and Ctrp5(S163R/wt) mice compared with Wt. Additional extracellular matrix (ECM) components that are HTRA1 substrates also accumulated in these mice. These results implicate HTRA1 and its interaction with CTRP5 in L‐ORD pathology. John Wiley and Sons Inc. 2019-08-05 2019-12 /pmc/articles/PMC6826137/ /pubmed/31385385 http://dx.doi.org/10.1111/acel.13011 Text en © 2019 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Paper
Chekuri, Anil
Zientara‐Rytter, Katarzyna
Soto‐Hermida, Angel
Borooah, Shyamanga
Voronchikhina, Marina
Biswas, Pooja
Kumar, Virender
Goodsell, David
Hayward, Caroline
Shaw, Peter
Stanton, Chloe
Garland, Donita
Subramani, Suresh
Ayyagari, Radha
Late‐onset retinal degeneration pathology due to mutations in CTRP5 is mediated through HTRA1
title Late‐onset retinal degeneration pathology due to mutations in CTRP5 is mediated through HTRA1
title_full Late‐onset retinal degeneration pathology due to mutations in CTRP5 is mediated through HTRA1
title_fullStr Late‐onset retinal degeneration pathology due to mutations in CTRP5 is mediated through HTRA1
title_full_unstemmed Late‐onset retinal degeneration pathology due to mutations in CTRP5 is mediated through HTRA1
title_short Late‐onset retinal degeneration pathology due to mutations in CTRP5 is mediated through HTRA1
title_sort late‐onset retinal degeneration pathology due to mutations in ctrp5 is mediated through htra1
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6826137/
https://www.ncbi.nlm.nih.gov/pubmed/31385385
http://dx.doi.org/10.1111/acel.13011
work_keys_str_mv AT chekurianil lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT zientararytterkatarzyna lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT sotohermidaangel lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT borooahshyamanga lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT voronchikhinamarina lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT biswaspooja lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT kumarvirender lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT goodselldavid lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT haywardcaroline lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT shawpeter lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT stantonchloe lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT garlanddonita lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT subramanisuresh lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1
AT ayyagariradha lateonsetretinaldegenerationpathologyduetomutationsinctrp5ismediatedthroughhtra1