HBS1L deficiency causes retinal dystrophy in a child and in a mouse model associated with defective development of photoreceptor cells.
Shiyu LuoBilal AlwattarQifei LiKiran BoraAlexandra K BlomfieldJasmine LinAnne FultonJing ChenPankaj B AgrawalPublished in: Disease models & mechanisms (2024)
Inherited retinal diseases encompass a genetically diverse group of conditions caused by variants in genes critical to retinal function, including handful of ribosome-associated genes. This study focuses on the HBS1L gene, which encodes for the HBS1-like translational GTPase that is crucial for ribosomal rescue. We have reported a female child carrying biallelic HBS1L variants, manifesting with poor growth and neurodevelopmental delay. Here, we describe the ophthalmologic findings in the patient and in Hbs1ltm1a/tm1a hypomorph mice and describe the associated microscopic and molecular perturbations. The patient has impaired visual function, showing dampened amplitudes of a- and b-waves in both rod- and cone-mediated responses. Hbs1ltm1a/tm1a mice exhibited profound thinning of the entire retina, specifically of the outer photoreceptor layer, due to extensive photoreceptor cell apoptosis. Loss of Hbs1l resulted in comprehensive proteomic alterations by mass spectrometry analysis, with an increase in the levels of 169 proteins and a decrease in the levels of 480 proteins, including rhodopsin (Rho) and peripherin 2 (Prph2). Gene Ontology biological process and gene set enrichment analyses reveal that the downregulated proteins are primarily involved in phototransduction, cilium assembly and photoreceptor cell development. These findings underscore the importance of ribosomal rescue proteins in maintaining retinal health, particularly in photoreceptor cells.
Keyphrases
- genome wide
- diabetic retinopathy
- copy number
- optical coherence tomography
- genome wide identification
- induced apoptosis
- optic nerve
- mass spectrometry
- mental health
- mouse model
- cell cycle arrest
- dna methylation
- single cell
- healthcare
- public health
- case report
- intellectual disability
- type diabetes
- genome wide analysis
- stem cells
- gene expression
- cell therapy
- high fat diet induced
- signaling pathway
- endoplasmic reticulum stress
- transcription factor
- liquid chromatography
- early onset
- adipose tissue
- mesenchymal stem cells
- insulin resistance
- autism spectrum disorder
- ms ms
- pi k akt