| Literature DB >> 30290152 |
Muhammad Ansar1, Hyung-Lok Chung2, Rachel L Taylor3, Aamir Nazir4, Samina Imtiaz5, Muhammad T Sarwar4, Alkistis Manousopoulou3, Periklis Makrythanasis6, Sondas Saeed5, Emilie Falconnet1, Michel Guipponi7, Constantin J Pournaras8, Maqsood A Ansari5, Emmanuelle Ranza7, Federico A Santoni9, Jawad Ahmed4, Inayat Shah4, Khitab Gul10, Graeme Cm Black3, Hugo J Bellen11, Stylianos E Antonarakis12.
Abstract
Infantile and childhood-onset cataracts form a heterogeneous group of disorders; among the many genetic causes, numerous pathogenic variants in additional genes associated with autosomal-recessive infantile cataracts remain to be discovered. We identified three consanguineous families affected by bilateral infantile cataracts. Using exome sequencing, we found homozygous loss-of-function variants in DNMBP: nonsense variant c.811C>T (p.Arg271∗) in large family F385 (nine affected individuals; LOD score = 5.18 at θ = 0), frameshift deletion c.2947_2948del (p.Asp983∗) in family F372 (two affected individuals), and frameshift variant c.2852_2855del (p.Thr951Metfs∗41) in family F3 (one affected individual). The phenotypes of all affected individuals include infantile-onset cataracts. RNAi-mediated knockdown of the Drosophila ortholog still life (sif), enriched in lens-secreting cells, affects the development of these cells as well as the localization of E-cadherin, alters the distribution of septate junctions in adjacent cone cells, and leads to a ∼50% reduction in electroretinography amplitudes in young flies. DNMBP regulates the shape of tight junctions, which correspond to the septate junctions in invertebrates, as well as the assembly pattern of E-cadherin in human epithelial cells. E-cadherin has an important role in lens vesicle separation and lens epithelial cell survival in humans. We therefore conclude that DNMBP loss-of-function variants cause infantile-onset cataracts in humans.Entities:
Keywords: DNMBP; Drosophila; ERG; bristles; cataract; cornea; eye development; photoreceptors; pigment cells; still life
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Year: 2018 PMID: 30290152 PMCID: PMC6174361 DOI: 10.1016/j.ajhg.2018.09.004
Source DB: PubMed Journal: Am J Hum Genet ISSN: 0002-9297 Impact factor: 11.025