Complement factor B is critical for sub-RPE deposit accumulation in a model of Doyne honeycomb retinal dystrophy with features of age-related macular degeneration

Author:

Crowley Maura A1,Garland Donita L2,Sellner Holger3,Banks Angela1,Fan Lin4,Rejtar Tomas4,Buchanan Natasha1,Delgado Omar1,Xu Yong Yao1,Jose Sandra1,Adams Christopher M5,Mogi Muneto5,Wang Karen4,Bigelow Chad E1,Poor Stephen1,Anderson Karen1,Jaffee Bruce D1,Prasanna Ganesh1,Grosskreutz Cynthia1,Fernandez-Godino Rosario2,Pierce Eric A2,Dryja Thaddeus P1,Liao Sha-Mei1ORCID

Affiliation:

1. Ophthalmology, Novartis Institutes for BioMedical Research , Cambridge, MA 02319 , USA

2. Ocular Genomics Institute at Massachusetts Eye and Ear, Harvard Medical School , Boston, MA 02114 , USA

3. Global Discovery Chemistry, Novartis Institutes for BioMedical Research , Basel , Switzerland

4. Analytical Sciences and Imaging, Novartis Institutes for BioMedical Research , Cambridge, MA 02319 , USA

5. Global Discovery Chemistry, Novartis Institutes for BioMedical Research , Cambridge, MA 02319 , USA

Abstract

Abstract EFEMP1 R345W is a dominant mutation causing Doyne honeycomb retinal dystrophy/malattia leventinese (DHRD/ML), a rare blinding disease with clinical pathology similar to age-related macular degeneration (AMD). Aged Efemp1  R345W/R345W knock-in mice (Efemp1ki/ki) develop microscopic deposits on the basal side of retinal pigment epithelial cells (RPE), an early feature in DHRD/ML and AMD. Here, we assessed the role of alternative complement pathway component factor B (FB) in the formation of these deposits. RNA-seq analysis of the posterior eyecups revealed increased unfolded protein response, decreased mitochondrial function in the neural retina (by 3 months of age) and increased inflammatory pathways in both neural retina and posterior eyecups (at 17 months of age) of Efemp1ki/ki mice compared with wild-type littermate controls. Proteomics analysis of eye lysates confirmed similar dysregulated pathways as detected by RNA-seq. Complement activation was increased in aged Efemp1ki/ki eyes with an approximately 2-fold elevation of complement breakdown products iC3b and Ba (P < 0.05). Deletion of the Cfb gene in female Efemp1ki/ki mice partially normalized the above dysregulated biological pathway changes and oral dosing of a small molecule FB inhibitor from 10 to 12 months of age reduced sub-RPE deposits by 65% (P = 0.029). In contrast, male Efemp1ki/ki mice had fewer sub-RPE deposits than age-matched females, no elevation of ocular complement activation and no effect of FB inhibition on sub-RPE deposits. The effects of FB deletion or inhibition on Efemp1ki/ki mice supports systemic inhibition of the alternative complement pathway as a potential treatment of dry AMD and DHRD/ML.

Funder

Novartis Institutes for BioMedical Research

Publisher

Oxford University Press (OUP)

Subject

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

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