4.4 Article

Identification of novel PROM1 mutations responsible for autosomal recessive maculopathy with rod-cone dystrophy

出版社

SPRINGER
DOI: 10.1007/s00417-018-04206-w

关键词

Hereditary retinal disease; Macular and rod-cone dystrophy; PROM1

资金

  1. National Science and Technology Major Project for Drug Discovery of the Ministry of Science and Technology of China [2018ZX09301029-001]
  2. National Natural Science Foundation of China [81700828]
  3. National Key R&D Program of China [2017YFA0105300]
  4. Program for Eastern Young Scholar at Shanghai Institutions of Higher Learning [QD2016003]
  5. Shanghai Rising-Star Program [17QA1402800]
  6. Shanghai Pujiang Program [16PJ1408500]
  7. Frontier Project of Hospital Development Center [SHDC12016105]
  8. Shanghai Jiao Tong University

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PurposeTo characterize two patients with macular and rod-cone dystrophy and identify the genetic basis for disease.MethodOphthalmic examinations were performed for the family and the peripheral blood samples were collected for whole exome sequencing. The mutated sequences of PROM1 gene were cloned and expressed in cultured cell lines after transient transfection followed by analysis with confocal microscopy and bridge-PCR.ResultWe reported that two patients, brothers in a family, were diagnosed with macular and rod-cone dystrophy. Phenotypically, both patients experience progressive visual impairment and nyctalopia. The fundus examination showed macular and choroid dystrophy with pigment deposits in the macular region. Functionally, photoreceptor response to electrophysiological stimulation was significantly compromised with more severe decline in rods. Genetic analysis by whole exome sequencing revealed two novel compound heterogeneous point mutations in PROM1 gene that co-segregate with patients in an autosomal recessive manner. Specifically, the c.C1902G(p.Y634X) nonsense mutation results in a truncated, labile, and mislocalized protein, while the c.C1682+3A>G intronic mutation disrupts messenger RNA splicing.ConclusionOur findings have identified two novel deleterious mutations in PROM1 gene that are associated with hereditary macular and rod-cone dystrophy in human.

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