首页> 美国卫生研究院文献>American Journal of Human Genetics >Loss-of-Function Variants in PPP1R12A: From Isolated Sex Reversal to Holoprosencephaly Spectrum and Urogenital Malformations
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Loss-of-Function Variants in PPP1R12A: From Isolated Sex Reversal to Holoprosencephaly Spectrum and Urogenital Malformations

机译:PPP1R12A中的函数丧失变体:从孤立的性逆转到全华畸形和泌尿生殖器畸形

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摘要

In two independent ongoing next-generation sequencing projects for individuals with holoprosencephaly and individuals with disorders of sex development, and through international research collaboration, we identified twelve individuals with de novo loss-of-function (LoF) variants in protein phosphatase 1, regulatory subunit 12a (PPP1R12A), an important developmental gene involved in cell migration, adhesion, and morphogenesis. This gene has not been previously reported in association with human disease, and it has intolerance to LoF as illustrated by a very low observed-to-expected ratio of LoF variants in gnomAD. Of the twelve individuals, midline brain malformations were found in five, urogenital anomalies in nine, and a combination of both phenotypes in two. Other congenital anomalies identified included omphalocele, jejunal, and ileal atresia with aberrant mesenteric blood supply, and syndactyly. Six individuals had stop gain variants, five had a deletion or duplication resulting in a frameshift, and one had a canonical splice acceptor site loss. Murine and human in situ hybridization and immunostaining revealed PPP1R12A expression in the prosencephalic neural folds and protein localization in the lower urinary tract at critical periods for forebrain division and urogenital development. Based on these clinical and molecular findings, we propose the association of PPP1R12A pathogenic variants with a congenital malformations syndrome affecting the embryogenesis of the brain and genitourinary systems and including disorders of sex development.
机译:在两个独立的正在进行的下一代测序项目中,为具有性能发展障碍的人的个人和个人进行性别,通过国际研究合作,我们确定了12名蛋白质磷酸酶1,监管亚基的蛋白质磷酸酶1中的功能丧失(LOF)变体。 12A(PPP1R12A),是涉及细胞迁移,粘附和形态发生的重要发育基因。此基因以前尚未与人类疾病相关联,并且它对LOF具有不耐受,如GNOMAD中的LOF变体的非常低观察到的预期比例所示。在十二个个体中,中线脑畸形被发现在五个,泌尿生殖器异常中有9个,以及两种表型的组合。鉴定的其他先天性异常包括omphalocele,jejunal和eLEAL闭锁,具有异常的肠系膜血液供应,并综合征。六个人有停止增益变体,五个缺失或重复导致架空,并且一个人具有规范剪接受体部位损失。鼠和人原位杂交和免疫染色揭示了在前脑分裂和泌尿生殖发育的关键时期的泌尿前神经折叠和蛋白质定位中的PPP1R12A表达。基于这些临床和分子发现,我们提出了PPP1R12A致病变异的关联,其具有影响脑和泌尿生殖系统胚胎发生的先天性畸形综合征,包括性发展障碍。

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