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BMP4 loss-of-function mutations in developmental eye disorders including SHORT syndrome.

机译:发育中的眼部疾病(包括SHORT综合征)中的BMP4功能丧失突变。

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BMP4 loss-of-function mutations and deletions have been shown to be associated with ocular, digital, and brain anomalies, but due to the paucity of these reports, the full phenotypic spectrum of human BMP4 mutations is not clear. We screened 133 patients with a variety of ocular disorders for BMP4 coding region mutations or genomic deletions. BMP4 deletions were detected in two patients: a patient affected with SHORT syndrome and a patient with anterior segment anomalies along with craniofacial dysmorphism and cognitive impairment. In addition to this, three intragenic BMP4 mutations were identified. A patient with anophthalmia, microphthalmia with sclerocornea, right-sided diaphragmatic hernia, and hydrocephalus was found to have a c.592C >T (p.R198X) nonsense mutation in BMP4. A frameshift mutation, c.171dupC (p.E58RfsX17), was identified in two half-siblings with anophthalmia/microphthalmia, discordant developmental delay/postaxial polydactyly, and poor growth as well as their unaffected mother; one affected sibling carried an additional BMP4 mutation in the second allele, c.362A > G (p.H121R). This is the first report indicating a role for BMP4 in SHORT syndrome, Axenfeld-Rieger malformation, growth delay, macrocephaly, and diaphragmatic hernia. These results significantly expand the number of reported loss-of-function mutations, further support the critical role of BMP4 in ocular development, and provide additional evidence of variable expressionon-penetrance of BMP4 mutations.
机译:BMP4功能丧失的突变和缺失已被证明与眼部,数字和脑部异常有关,但是由于这些报道的缺乏,人类BMP4突变的完整表型谱尚不清楚。我们筛选了133名患有各种眼部疾病的患者的BMP4编码区突变或基因组缺失。在两名患者中检测到BMP4缺失:一名患有SHORT综合征的患者和一名前节异常伴有颅面畸形和认知障碍的患者。除此之外,还鉴定了三个基因内BMP4突变。一名患有无眼症,患有巩膜炎的小眼症,右侧diaphragm肌疝和脑积水的患者发现BMP4的c.592C> T(p.R198X)无意义突变。在两个患有同情眼/小眼症,发育迟缓/后轴多指畸形,生长不良的未成年母亲及其未受影响的母亲的两个同胞中鉴定出了移码突变c.171dupC(p.E58RfsX17)。一个受影响的兄弟姐妹在第二个等位基因中携带了另一个BMP4突变,c.362A> G(p.H121R)。这是第一个表明BMP4在SHORT综合征,Axenfeld-Rieger畸形,生长延迟,大头畸形和diaphragm肌疝中的作用的报告。这些结果显着扩大了报告的功能丧失突变的数量,进一步支持了BMP4在眼发育中的关键作用,并提供了BMP4突变的可变表达/非穿透性的其他证据。

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