Literature DB >> 30101608

Gene Therapy Rescues Retinal Degeneration in Receptor Expression-Enhancing Protein 6 Mutant Mice.

Smriti Agrawal Zaneveld1,2, Aiden Eblimit1,2, Qingnan Liang1,3, Renae Bertrand1,3, Nathaniel Wu1,2, Hehe Liu1,2, Quynh Nguyen3, Jacques Zaneveld1,2, Keqing Wang1,2, Yumei Li1,2, Rui Chen1,2.   

Abstract

Hereditary retinal dystrophy is clinically defined as a broad group of chronic and progressive disorders that affect visual function by causing photoreceptor degeneration. Previously, we identified mutations in the gene encoding receptor expression-enhancing protein 6 (REEP6), in individuals with autosomal recessive retinitis pigmentosa (RP), the most common form of inherited retinal dystrophy. One individual was molecularly diagnosed with biallelic REEP6 mutations, a missense mutation over a frameshift mutation. In this study, we generated Reep6 compound heterozygous mice, Reep6L135P/-, which mimic the patient genotype and recapitulate the early-onset retinal degeneration phenotypes observed in the individual with RP. To determine the feasibility of rescuing the Reep6 mutant phenotype via gene replacement therapy, we delivered Reep6.1, the mouse retina-specific isoform of REEP6, to photoreceptors of Reep6 mutant mice on postnatal day 20. Evaluation of the therapeutic effects 2 months posttreatment showed improvements in the photoresponse as well as preservation of photoreceptor cells. Importantly, guanylyl cyclase 1 (GC1) expression was also restored to the outer segment after treatment. Furthermore, rAAV8-Reep6.1 single treatment in Reep6 mutant mice 1 year postinjection showed significant improvements in retinal function and morphology, suggesting that the treatment is effective even after a prolonged period. Findings from this study show that gene replacement therapy in the retina with rAAV overexpressing Reep6 is effective, preserving photoreceptor function in Reep6 mutant mice. These findings provide evidence that rAAV8-based gene therapy can prolong survival of photoreceptors in vivo and can be potentially used as a therapeutic modality for treatment of patients with RP.

Entities:  

Keywords:  REEP6; blindness; gene therapy; human disease; inherited retinal dystrophy; retinitis pigmentosa

Mesh:

Substances:

Year:  2018        PMID: 30101608      PMCID: PMC6437630          DOI: 10.1089/hum.2018.078

Source DB:  PubMed          Journal:  Hum Gene Ther        ISSN: 1043-0342            Impact factor:   5.695


  49 in total

Review 1.  ER stress in retinal degeneration: a target for rational therapy?

Authors:  Ana Griciuc; Liviu Aron; Marius Ueffing
Journal:  Trends Mol Med       Date:  2011-05-27       Impact factor: 11.951

2.  RD3 gene delivery restores guanylate cyclase localization and rescues photoreceptors in the Rd3 mouse model of Leber congenital amaurosis 12.

Authors:  Laurie L Molday; Hidayat Djajadi; Paul Yan; Lukasz Szczygiel; Sanford L Boye; Vince A Chiodo; Kevin Gregory-Evans; Marinko V Sarunic; William W Hauswirth; Robert S Molday
Journal:  Hum Mol Genet       Date:  2013-06-04       Impact factor: 6.150

3.  Endoplasmic reticulum stress is activated in light-induced retinal degeneration.

Authors:  Li-ping Yang; Le-meng Wu; Xiu-juan Guo; Ying Li; Mark O M Tso
Journal:  J Neurosci Res       Date:  2008-03       Impact factor: 4.164

Review 4.  Dawn of ocular gene therapy: implications for molecular diagnosis in retinal disease.

Authors:  Jacques Zaneveld; Feng Wang; Xia Wang; Rui Chen
Journal:  Sci China Life Sci       Date:  2013-02-08       Impact factor: 6.038

5.  A class of membrane proteins shaping the tubular endoplasmic reticulum.

Authors:  Gia K Voeltz; William A Prinz; Yoko Shibata; Julia M Rist; Tom A Rapoport
Journal:  Cell       Date:  2006-02-10       Impact factor: 41.582

6.  AAV-mediated RLBP1 gene therapy improves the rate of dark adaptation in Rlbp1 knockout mice.

Authors:  Vivian W Choi; Chad E Bigelow; Terri L McGee; Akshata N Gujar; Hui Li; Shawn M Hanks; Joanna Vrouvlianis; Michael Maker; Barrett Leehy; Yiqin Zhang; Jorge Aranda; George Bounoutas; John T Demirs; Junzheng Yang; Richard Ornberg; Yu Wang; Wendy Martin; Kelly R Stout; Gregory Argentieri; Paul Grosenstein; Danielle Diaz; Oliver Turner; Bruce D Jaffee; Seshidhar R Police; Thaddeus P Dryja
Journal:  Mol Ther Methods Clin Dev       Date:  2015-07-08       Impact factor: 6.698

7.  REEP6 deficiency leads to retinal degeneration through disruption of ER homeostasis and protein trafficking.

Authors:  Smriti A Agrawal; Thomas Burgoyne; Aiden Eblimit; James Bellingham; David A Parfitt; Amelia Lane; Ralph Nichols; Chinwe Asomugha; Matthew J Hayes; Peter M Munro; Mingchu Xu; Keqing Wang; Clare E Futter; Yumei Li; Rui Chen; Michael E Cheetham
Journal:  Hum Mol Genet       Date:  2017-07-15       Impact factor: 6.150

8.  Arl3 and RP2 regulate the trafficking of ciliary tip kinesins.

Authors:  Nele Schwarz; Amelia Lane; Katarina Jovanovic; David A Parfitt; Monica Aguila; Clare L Thompson; Lyndon da Cruz; Peter J Coffey; J Paul Chapple; Alison J Hardcastle; Michael E Cheetham
Journal:  Hum Mol Genet       Date:  2017-09-01       Impact factor: 6.150

Review 9.  The cell stress machinery and retinal degeneration.

Authors:  Dimitra Athanasiou; Monica Aguilà; Dalila Bevilacqua; Sergey S Novoselov; David A Parfitt; Michael E Cheetham
Journal:  FEBS Lett       Date:  2013-05-15       Impact factor: 4.124

10.  Targeting photoreceptors via intravitreal delivery using novel, capsid-mutated AAV vectors.

Authors:  Christine N Kay; Renee C Ryals; George V Aslanidi; Seok Hong Min; Qing Ruan; Jingfen Sun; Frank M Dyka; Daniel Kasuga; Andrea E Ayala; Kim Van Vliet; Mavis Agbandje-McKenna; William W Hauswirth; Sanford L Boye; Shannon E Boye
Journal:  PLoS One       Date:  2013-04-26       Impact factor: 3.240

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  3 in total

1.  Identification of the Transcriptional Biomarkers Panel Linked to Pathological Remodelling of the Eye Tissues in Various HD Mouse Models.

Authors:  Iwona Mazur-Michałek; Marcin Ruciński; Mateusz Sowiński; Paulina Pietras; Marta Leśniczak-Staszak; Witold Szaflarski; Mark Isalan; Michal Mielcarek
Journal:  Cells       Date:  2022-05-18       Impact factor: 7.666

2.  Transcript isoforms of Reep6 have distinct functions in the retina.

Authors:  Qingnan Liang; Nathaniel Wu; Smriti Zaneveld; Hehe Liu; Shangyi Fu; Keqing Wang; Renae Bertrand; Jun Wang; Yumei Li; Rui Chen
Journal:  Hum Mol Genet       Date:  2021-10-13       Impact factor: 5.121

3.  AAV8-Mediated Gene Therapy Rescues Retinal Degeneration Phenotype in a Tlcd3b Knockout Mouse Model.

Authors:  Xinye Qian; Hehe Liu; Shangyi Fu; Jiaxiong Lu; Yu-Ting Hung; Cassidy Turner; Haiwei Gu; Rui Chen
Journal:  Invest Ophthalmol Vis Sci       Date:  2022-03-02       Impact factor: 4.799

  3 in total

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