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GTF2IRD1 in craniofacial development of humans and mice

机译:GTF2IRD1在人和小鼠颅面发育中的作用

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Craniofacial abnormalities account for about one-third of all human congenital defects, but our understanding of the genetic mechanisms governing craniofacial development is incomplete. We show that GTF2/RD1 is a genetic determinant of mammalian craniofacial and cognitive development, and we implicate another member of the TFII-I transcription factor family, GTF2I, in both aspects. Gtf2ird1-null mice exhibit phenotypic abnormalities reminiscent of the human microdeletion disorder Williams-Beuren syndrome (WBS); craniofacial imaging reveals abnormalities in both skull and jaws that may arise through misregulation of goosecoid, a downstream target of Gtf2ird1. In humans, a rare WBS individual with an atypical deletion, including GTF2IRD1, shows facial dysmorphism and cognitive deficits that differ from those of classic WBS cases. We propose a mechanism of cumulative dosage effects of duplicated and diverged genes applicable to other human chromosomal disorders.
机译:颅面异常约占人类所有先天性缺陷的三分之一,但我们对控制颅面发育的遗传机制的理解并不完整。我们表明,GTF2 / RD1是哺乳动物颅面和认知发育的遗传决定因素,并且在两个方面都暗示了TFII-1转录因子家族的另一个成员GTF2I。 Gtf2ird1-null小鼠表现出表型异常,让人联想到人类微缺失症威廉姆斯-布伦综合征(WBS);颅面成像显示颅骨和颌骨异常,可能是由于Gtf2ird1的下游靶点鹅鹅的失调引起的。在人类中,罕见的具有非典型缺失的WBS个体(包括GTF2IRD1)显示出与经典WBS病例不同的面部畸形和认知缺陷。我们提出了一种适用于其他人类染色体疾病的重复和发散基因的累积剂量效应的机制。

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