Expression and subcellular localization ofUSH1C/harmonin in human retina provides insights into pathomechanisms and therapy

Author:

Nagel-Wolfrum Kerstin12,Fadl Benjamin R13,Becker Mirjana M1,Wunderlich Kirsten A4,Schäfer Jessica1,Sturm Daniel12,Fritze Jacques1,Gür Burcu1,Kaplan Lew4ORCID,Andreani Tommaso5,Goldmann Tobias1ORCID,Brooks Matthew3,Starostik Margaret R3ORCID,Lokhande Anagha3,Apel Melissa6,Fath Karl R17ORCID,Stingl Katarina8,Kohl Susanne9,DeAngelis Margaret M10,Schlötzer-Schrehardt Ursula11,Kim Ivana K12,Owen Leah A13,Vetter Jan M6,Pfeiffer Norbert6,Andrade-Navarro Miguel A5,Grosche Antje4,Swaroop Anand3,Wolfrum Uwe1ORCID

Affiliation:

1. Johannes Gutenberg University Mainz Institute of Molecular Physiology, , 55128 Mainz , Germany

2. Johannes Gutenberg University Mainz Institute of Developmental Biology and Neurobiology, , 55128 Mainz , Germany

3. National Institutes of Health Neurobiology, Neurodegeneration and Repair Laboratory, National Eye Institute, , Bethesda, MD 20892 , USA

4. Department of Physiological Genomics, BioMedical Center, Ludwig-Maximilian University Munich , 82152 Planegg-Martinsried , Germany

5. Johannes Gutenberg University Mainz Computational Biology and Data Mining, Institute of Organismic & Molecular Evolution Biology, , 55128 Mainz , Germany

6. University Medical Centre Mainz Department of Ophthalmology, , 55131 Mainz , Germany

7. Department of Biology, Queens College of CUNY , Kissena Blvd, Flushing, NY 11367 , USA

8. University of Tubingen University Eye Hospital, Centre for Ophthalmology, , 72076 Tubingen , Germany

9. University of Tubingen Institute for Ophthalmic Research, Centre for Ophthalmology, , 72076 Tubingen , Germany

10. University of Buffalo Department of Ophthalmology and Ira G. Ross Eye Institute, Jacobs School of Medicine and Biomedical Sciences, , NY 14209 , USA

11. Friedrich-Alexander-Universität Department of Ophthalmology, , Erlangen-Nürnberg, 91054 Erlangen , Germany

12. Massachusetts Eye and Ear Infirmary, Harvard Medical School Retina Service, , Boston, MA 02114 , USA

13. University of Utah Department of Ophthalmology and Visual Sciences, , Salt Lake City, UT 84132 , USA

Abstract

AbstractUsher syndrome (USH) is the most common form of hereditary deaf-blindness in humans. USH is a complex genetic disorder, assigned to three clinical subtypes differing in onset, course and severity, with USH1 being the most severe. Rodent USH1 models do not reflect the ocular phenotype observed in human patients to date; hence, little is known about the pathophysiology of USH1 in the human eye. One of the USH1 genes, USH1C, exhibits extensive alternative splicing and encodes numerous harmonin protein isoforms that function as scaffolds for organizing the USH interactome. RNA-seq analysis of human retinae uncovered harmonin_a1 as the most abundant transcript of USH1C. Bulk RNA-seq analysis and immunoblotting showed abundant expression of harmonin in Müller glia cells (MGCs) and retinal neurons. Furthermore, harmonin was localized in the terminal endfeet and apical microvilli of MGCs, presynaptic region (pedicle) of cones and outer segments (OS) of rods as well as at adhesive junctions between MGCs and photoreceptor cells (PRCs) in the outer limiting membrane (OLM). Our data provide evidence for the interaction of harmonin with OLM molecules in PRCs and MGCs and rhodopsin in PRCs. Subcellular expression and colocalization of harmonin correlate with the clinical phenotype observed in USH1C patients. We also demonstrate that primary cilia defects in USH1C patient-derived fibroblasts could be reverted by the delivery of harmonin_a1 transcript isoform. Our studies thus provide novel insights into PRC cell biology, USH1C pathophysiology and development of gene therapy treatment(s).

Funder

ProRetina Foundation Germany

Deutsche Forschungsgemeinschaft

Foundation Fighting Blindness

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

Reference92 articles.

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