4.7 Article

Identification of the Photoreceptor Transcriptional Co-Repressor SAMD11 as Novel Cause of Autosomal Recessive Retinitis Pigmentosa

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SCIENTIFIC REPORTS
卷 6, 期 -, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/srep35370

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资金

  1. Spanish Centre for Biomedical Network Research on Rare Diseases (CIBERER) [06/07/0036]
  2. Instituto de Salud Carlos III (ISCIII, Spanish Ministry of Health)/FEDER, including FIS [PI013/00226]
  3. RETICS [RD09/0076/00101, RD12/0034/0010]
  4. Ministry of Economy and Competitiveness (MINECO), including FEDER [BFU2012-36845, BIO2011-27069]
  5. Conselleria de Educacic of the Valencia Community [PROMETEOII/2014/025]
  6. Spanish National Organization of the Blind (ONCE)
  7. Spanish Fighting Blindness Foundation (FUNDALUCE)
  8. Miguel Servet Program for Researchers in the Spanish National Health Service [CP12/03256]
  9. Fundacion Conchita Rabago (FCR)
  10. RETICS from ISCIII [RD12/0034/0010]
  11. CAPES Foundation
  12. Ministry of Education of Brazil

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Retinitis pigmentosa (RP), the most frequent form of inherited retinal dystrophy is characterized by progressive photoreceptor degeneration. Many genes have been implicated in RP development, but several others remain to be identified. Using a combination of homozygosity mapping, whole-exome and targeted next-generation sequencing, we found a novel homozygous nonsense mutation in SAMD11 in five individuals diagnosed with adult-onset RP from two unrelated consanguineous Spanish families. SAMD11 is ortholog to the mouse major retinal SAM domain (mr-s) protein that is implicated in CRX-mediated transcriptional regulation in the retina. Accordingly, protein-protein network analysis revealed a significant interaction of SAMD11 with CRX. Immunoblotting analysis confirmed strong expression of SAMD11 in human retina. Immunolocalization studies revealed SAMD11 was detected in the three nuclear layers of the human retina and interestingly differential expression between cone and rod photoreceptors was observed. Our study strongly implicates SAMD11 as novel cause of RP playing an important role in the pathogenesis of human degeneration of photoreceptors.

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