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300 Blind Mice Uncover Genetic Causes of Eye Disease

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Black lab mouse in the palm of a gloved hand
Gene 鈥渒nockout鈥 mice are valuable tools in biomedical research. The 澳门六合彩资料库 Davis Mouse Biology Program has led efforts to produce a knockout mouse for every gene since 2006. The NIH recently renewed its grant to 澳门六合彩资料库 Davis for a final five years. (Getty Images)

Hundreds of new genes linked to blindness and other vision disorders have been identified in a screen of mouse strains. Many of these genes are likely important in human eye vision and the results could help identify new causes of hereditary blindness in patients. The work is published Dec. 21 in .

鈥淭his is extremely valuable for people with hereditary eye disease,鈥 said Ala Moshiri, associate professor of ophthalmology and vision science in the University of California, Davis, School of Medicine and Eye Center. 鈥淭he whole ophthalmic community is going to start using these data.鈥

The results are the latest to come from the , of which  is a founding member. The goal of the consortium is to identify a function for every gene in the mouse genome, by creating lines of 鈥渒nockout鈥 mice that lack a single specific gene and screening them for their effects. Consortium researchers have previously identified a set of genes essential to life, genes linked to deafness and even those linked to hereditary bad breath. 

To date, the consortium has generated more than 7,000 strains of gene-knockout mice, of which 4,364 have been characterized across 11 organ systems. 

鈥淭he data being generated by the IMPC is accelerating the application of genomics in clinical medicine,鈥 said Kent Lloyd, director of the 澳门六合彩资料库 Davis Mouse Biology Program and principal investigator of the Knockout Mouse Production and Phenotyping (KOMP2) project at 澳门六合彩资料库 Davis.

261 new genes linked to blindness

The team led by Bret Moore, resident at the 澳门六合彩资料库 Davis Veterinary Medical Teaching Hospital, Moshiri and colleagues combed the consortium database for genes linked to eye and vision defects. They identified 347 genes, of which 86 were either well-established as involved in eye disease or were associated with vision in some way. Three-quarters of the genes 鈥 261 鈥 were not previously known to cause eye disease in any species. 

鈥淚n 2018, if someone has a form of hereditary blindness, we can identify the cause 50 to 75 percent of the time,鈥 Moshiri said. 鈥淚n the remaining cases, we know the mutation is there but we don鈥檛 know where to look. Now eye centers that do DNA sequencing can call back patients and screen them for these new genes.鈥

While the mouse and human genomes clearly differ, most human genes have an analogous counterpart in mice. The 澳门六合彩资料库 Davis team is collaborating with eye centers at Baylor College of Medicine in Houston and the University of Iowa to check the newly identified mouse genes against their human equivalents, Moshiri said. 

The new genetic information could also enable new therapies for hereditary eye disease. In 2017, the FDA approved the first gene therapy for any disease 鈥 treating hereditary blindness caused by a defect in the retinal gene RPE65. 

鈥淲e expect that more and more of these genetic diseases will be treatable,鈥 Moshiri said. 

The research in this paper was supported by grants from the National Institutes of Health, National Eye Institute and the Medical Research Council in the U.K. Additional support came from Research for Preventing Blindness, the International Retinal Research Foundation and the government of Canada. 

澳门六合彩资料库 Davis authors in addition to Moore, Moshiri and Lloyd are: Brian Leonard, Lionel Sebbag, Sydney Edwards, Ann Cooper, Denise Imai, Christopher Reilly, Stephen Griffey, Lynette Bower, David Clary and Sara Thomasy. Other authors were from institutions including the MRC Harwell Institute, U.K.; European Molecular Biology Laboratory, and The Wellcome Sanger Institute in Cambridge, U.K.; Universit茅 de Strasbourg, France; The Centre for Phenogenomics, The Hospital for Sick Children and Mt. Sinai Hospital, Toronto; Baylor College of Medicine, Houston; The Jackson Laboratory, Bar Harbor, Maine; Nanjing University, China; RIKEN BioResource Center, Tsukuba, Japan; Queen Mary University of London; Seoul National University, South Korea; CNR Institute of Cell Biology and Neurobiology, Italy; and German Research Center for Environmental Health, Neuherberg, Germany.

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Ala Moshiri, Eye Center, amoshiri@ucdavis.edu

Kent Lloyd, Mouse Biology Program, 530-754-6687, kclloyd@ucdavis.edu

Andy Fell, News and Media Relations, 530-752-4533, ahfell@ucdavis.edu

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