A frequent variant in the Japanese population determines quasi-Mendelian inheritance of rare retinal ciliopathy
Hereditary retinal degenerations (HRDs) are Mendelian diseases characterized by progressive blindness and caused by ultra-rare mutations. In a genomic screen of 331 unrelated Japanese patients, we identify a disruptive Alu insertion and a nonsense variant (p.Arg1933*) in the ciliary gene RP1 , neith...
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Veröffentlicht in: | Nature communications 2019-06, Vol.10 (1), p.2884-7, Article 2884 |
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Sprache: | eng |
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Zusammenfassung: | Hereditary retinal degenerations (HRDs) are Mendelian diseases characterized by progressive blindness and caused by ultra-rare mutations. In a genomic screen of 331 unrelated Japanese patients, we identify a disruptive
Alu
insertion and a nonsense variant (p.Arg1933*) in the ciliary gene
RP1
, neither of which are rare alleles in Japan. p.Arg1933* is almost polymorphic (frequency = 0.6%, amongst 12,000 individuals), does not cause disease in homozygosis or heterozygosis, and yet is significantly enriched in HRD patients (frequency = 2.1%, i.e., a 3.5-fold enrichment;
p
-value = 9.2 × 10
−5
). Familial co-segregation and association analyses show that p.Arg1933* can act as a Mendelian mutation in
trans
with the
Alu
insertion, but might also associate with disease in combination with two alleles in the
EYS
gene in a non-Mendelian pattern of heredity. Our results suggest that rare conditions such as HRDs can be paradoxically determined by relatively common variants, following a quasi-Mendelian model linking monogenic and complex inheritance.
Genetic variants in
RP1
can cause hereditary retinal degeneration (HRD). Here, in a genomic screen of 331 Japanese HRD patients, the authors identify a near-polymorphic
RP1
variant that causes Mendelian HRD in
trans
with an
Alu
insertion and otherwise is associated with HRD according to a complex model of inheritance. |
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ISSN: | 2041-1723 2041-1723 |
DOI: | 10.1038/s41467-019-10746-4 |