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Article Abstract

ARL3 is essential for cilia development, and mutations in ARL3 are closely associated with ciliopathies. In a previous study, we observed distinct phenotypes of retinal dystrophy in patients with heterozygous ARL3 and compound heterozygous ARL3 mutations, indicating that different mutation types may exert diverse effects on their functions. Here, we generated transformed immortal fibroblast cells from patients carrying heterozygous ARL3 and compound heterozygous ARL3 mutations, and systematically evaluated their cilia morphology and function, which were further validated in ARPE-19 cells. Results showed that both ARL3 and ARL3 mutations led to a decrease in cilium formation. The ARL3 mutations caused significantly elongated cilia and impaired retrograde transport, whereas the ARL3 mutation did not induce significant changes in fibroblasts. RNA-sequencing results indicated that compared to ARL3 , ARL3 fibroblasts exhibited a higher enrichment of biological processes related to neuron projection development, tissue morphogenesis, and extracellular matrix (ECM) organization, with noticeable alterations in pathways such as ECM-receptor interaction, focal adhesion, and TGF-β signaling. Similar changes were observed in the proteomic results in ARPE-19 cells. Core regulated genes including IQUB, UNC13D, RAB3IP, and GRIP1 were specifically downregulated in the ARL3 group, and expressions of IQUB, NPM2, and SLC38A4 were further validated. Additionally, IQUB showed a rescuing effect on the overlong cilia observed in ARL3 fibroblasts. Our results not only enhance our understanding of ARL3-related diseases but also provide new insights into the analysis of heterozygous and compound heterozygous mutations in genetics.

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http://dx.doi.org/10.1096/fj.202301906RDOI Listing

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Article Synopsis
  • - Mitochondria are crucial for the health and functioning of retinal cells, and problems with mitochondria are linked to various retinal degenerative diseases, particularly in cases involving mutations.
  • - This study focused on how specific mutations related to ARL3 affect mitochondrial function in fibroblast cells from patients with ARL3-related rod-cone dystrophy, revealing decreased mitochondrial respiration and increased harmful reactive oxygen species (ROS).
  • - Comparative testing in another cell type (ARPE-19) indicated that ARL3 mutations lead to both decreased mitochondrial function and increased apoptosis, highlighting the complex relationship between these mutations and mitochondrial health.
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ARL3 is essential for cilia development, and mutations in ARL3 are closely associated with ciliopathies. In a previous study, we observed distinct phenotypes of retinal dystrophy in patients with heterozygous ARL3 and compound heterozygous ARL3 mutations, indicating that different mutation types may exert diverse effects on their functions. Here, we generated transformed immortal fibroblast cells from patients carrying heterozygous ARL3 and compound heterozygous ARL3 mutations, and systematically evaluated their cilia morphology and function, which were further validated in ARPE-19 cells.

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RABL2 promotes the outward transition zone passage of signaling proteins in cilia via ARL3.

Proc Natl Acad Sci U S A

August 2023

State Key Laboratory of Food Nutrition and Safety, Institute of Health Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, China.

Certain transmembrane and membrane-tethered signaling proteins export from cilia as BBSome cargoes via the outward BBSome transition zone (TZ) diffusion pathway, indispensable for maintaining their ciliary dynamics to enable cells to sense and transduce extracellular stimuli inside the cell. Murine Rab-like 2 (Rabl2) GTPase resembles Arf-like 3 (ARL3) GTPase in promoting outward TZ passage of the signaling protein cargo-laden BBSome. During this process, ARL3 binds to and recruits the retrograde IFT train-dissociated BBSome as its effector to diffuse through the TZ for ciliary retrieval, while how RABL2 and ARL3 cross talk in this event remains uncertain.

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