» Articles » PMID: 37466729

Comparative Study of PRPH2 D2 Loop Mutants Reveals Divergent Disease Mechanism in Rods and Cones

Overview
Publisher Springer
Specialty Biology
Date 2023 Jul 19
PMID 37466729
Authors
Affiliations
Soon will be listed here.
Abstract

Mutations in the photoreceptor-specific tetraspanin gene peripherin-2 (PRPH2) lead to widely varying forms of retinal degeneration ranging from retinitis pigmentosa to macular dystrophy. Both inter- and intra-familial phenotypic heterogeneity has led to much interest in uncovering the complex pathogenic mechanisms of PRPH2-associated disease. Majority of disease-causing mutations in PRPH2 reside in the second intradiscal loop, wherein seven cysteines control protein folding and oligomerization. Here, we utilize knockin models to evaluate the role of three D2 loop cysteine mutants (Y141C, C213Y and C150S), alone or in combination. We elucidated how these mutations affect PRPH2 properties, including oligomerization and subcellular localization, and contribute to disease processes. Results from our structural, functional and molecular studies revealed that, in contrast to our understanding from prior investigations, rods are highly affected by PRPH2 mutations interfering with oligomerization and not merely by the haploinsufficiency associated with these mutations. On the other hand, cones are less affected by the toxicity of the mutant protein and significantly reduced protein levels, suggesting that knockdown therapeutic strategies may sustain cone functionality for a longer period. This observation provides useful data to guide and simplify the current development of effective therapeutic approaches for PRPH2-associated diseases that combine knockdown with high levels of gene supplementation needed to generate prolonged rod improvement.

Citing Articles

The PRPH2 D2 Loop: Biochemical Insights and Implications in Disease.

Ikelle L, Al-Ubaidi M, Naash M Adv Exp Med Biol. 2025; 1468:313-317.

PMID: 39930215 DOI: 10.1007/978-3-031-76550-6_52.


Phenotypic and Genetic Heterogeneity of a Pakistani Cohort of 15 Consanguineous Families Segregating Variants in Leber Congenital Amaurosis-Associated Genes.

Akhtar Z, Altaf S, Li Y, Bibi S, Shah J, Afshan K Genes (Basel). 2025; 15(12.

PMID: 39766915 PMC: 11728111. DOI: 10.3390/genes15121646.


Retinal Dystrophies Associated With Peripherin-2: Genetic Spectrum and Novel Clinical Observations in 241 Patients.

Heath Jeffery R, Thompson J, Lo J, Chelva E, Armstrong S, Pulido J Invest Ophthalmol Vis Sci. 2024; 65(5):22.

PMID: 38743414 PMC: 11098050. DOI: 10.1167/iovs.65.5.22.


-Related Retinal Dystrophies: Mutational Spectrum in 103 Families from a Spanish Cohort.

Fernandez-Caballero L, Martin-Merida I, Blanco-Kelly F, Avila-Fernandez A, Carreno E, Fernandez-San Jose P Int J Mol Sci. 2024; 25(5).

PMID: 38474159 PMC: 10931554. DOI: 10.3390/ijms25052913.

References
1.
Chakraborty D, Conley S, Zulliger R, Naash M . The K153Del PRPH2 mutation differentially impacts photoreceptor structure and function. Hum Mol Genet. 2016; 25(16):3500-3514. PMC: 5179945. DOI: 10.1093/hmg/ddw193. View

2.
Tebbe L, Kakakhel M, Makia M, Al-Ubaidi M, Naash M . The Interplay between Peripherin 2 Complex Formation and Degenerative Retinal Diseases. Cells. 2020; 9(3). PMC: 7140794. DOI: 10.3390/cells9030784. View

3.
Berditchevski F . Complexes of tetraspanins with integrins: more than meets the eye. J Cell Sci. 2001; 114(Pt 23):4143-51. DOI: 10.1242/jcs.114.23.4143. View

4.
Molday R, Hicks D, Molday L . Peripherin. A rim-specific membrane protein of rod outer segment discs. Invest Ophthalmol Vis Sci. 1987; 28(1):50-61. View

5.
Lipper C, Gabriel K, Seegar T, Durr K, Tomlinson M, Blacklow S . Crystal structure of the Tspan15 LEL domain reveals a conserved ADAM10 binding site. Structure. 2021; 30(2):206-214.e4. PMC: 8818019. DOI: 10.1016/j.str.2021.10.007. View