Publication: Increased H3K27 trimethylation contributes to cone survival in a mouse model of cone dystrophy
Increased H3K27 trimethylation contributes to cone survival in a mouse model of cone dystrophy
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Miller, A. L., Fuller-Carter, P. I., Masarini, K., Samardzija, M., Carter, K. W., Rashwan, R., Lim, X. R., Brunet, A. A., Chopra, A., Ram, R., Grimm, C., Ueffing, M., Carvalho, L. S., & Trifunović, D. (2022). Increased H3K27 trimethylation contributes to cone survival in a mouse model of cone dystrophy. Cellular and Molecular Life Sciences, 79(8), 409. https://doi.org/10.1007/s00018-022-04436-6
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Inherited retinal diseases (IRDs) are a heterogeneous group of blinding disorders, which result in dysfunction or death of the light-sensing cone and rod photoreceptors. Despite individual IRDs (Inherited retinal disease) being rare, collectively, they affect up to 1:2000 people worldwide, causing a significant socioeconomic burden, especially when cone-mediated central vision is affected. This study uses the Pde6c$^{cpfl1}$ mouse model of achromatopsia, a cone-specific vision loss IRD (Inherited retinal disease), to investigate the p
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Tahija Foundation
Future Health Research and Innovation Fund Scheme
Kerstan Foundation
ProRetina Foundation
University of Western Australia
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Miller, A. L., Fuller-Carter, P. I., Masarini, K., Samardzija, M., Carter, K. W., Rashwan, R., Lim, X. R., Brunet, A. A., Chopra, A., Ram, R., Grimm, C., Ueffing, M., Carvalho, L. S., & Trifunović, D. (2022). Increased H3K27 trimethylation contributes to cone survival in a mouse model of cone dystrophy. Cellular and Molecular Life Sciences, 79(8), 409. https://doi.org/10.1007/s00018-022-04436-6