首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Essential Functions Of The Williams-beuren Syndrome-associated Tfii-i Genes In Embryonic Development
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Essential Functions Of The Williams-beuren Syndrome-associated Tfii-i Genes In Embryonic Development

机译:威廉姆斯-伯恩氏综合征相关的Tfii-i基因在胚胎发育中的基本功能。

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GTF2I and GTF2IRD1 encoding the multifunctional transcription factors TFII-I and BEN are clustered at the 7q 11.23 region hemizy gously deleted in Williams-Beuren syndrome (WBS), a complex multisystemic neurodevelopmental disorder. Although the biochemical properties of TFII-I family transcription factors have been studied in depth, little is known about the specialized contributions of these factors in pathways required for proper embryonic development. Here, we show that homozygous loss of either Gtf2ird1 or Gtf2i function results in multiple phenotypic manifestations, including embryonic lethality; brain hemorrhage; and vasculogenic, craniofacial, and neural tube defects in mice. Further analyses suggest that embryonic lethality may be attributable to defects in yolk sac vasculogenesis and angiogenesis. Microarray data indicate that the Gtf2ird1 homozygous phenotype is mainly caused by an impairment of the genes involved in the TGFβRII/ Alk1/Smad5 signal transduction pathway. The effect of Gtf2i inactivation on this pathway is less prominent, but downregula-tion of the endothelial growth factor receptor-2 gene, resulting in the deterioration of vascular signaling, most likely exacerbates the severity of the Gtf2i mutant phenotype. A subset of Gtf2ird1 and Gtf2i heterozygotes displayed microcephaly, retarded growth, and skeletal and craniofacial defects, therefore showing that haploin sufficiency of TFII-I proteins causes various developmental anomalies that are often associated with WBS.
机译:编码多功能转录因子TFII-I和BEN的GTF2I和GTF2IRD1聚簇在Williams-Beuren综合征(WBS)(一种复杂的多系统神经发育障碍)的半衰期7q 11.23区。尽管已经深入研究了TFII-1家族转录因子的生物化学特性,但是对于这些因子在适当的胚胎发育所需的途径中的专门贡献知之甚少。在这里,我们表明,Gtf2ird1或Gtf2i功能的纯合丢失会导致多种表型表现,包括胚胎致死率;脑出血以及小鼠的血管生成,颅面和神经管缺陷。进一步的分析表明,胚胎致死性可能归因于卵黄囊血管生成和血管生成的缺陷。微阵列数据表明,Gtf2ird1纯合表型主要是由参与TGFβRII/ Alk1 / Smad5信号转导途径的基因的损伤引起的。 Gtf2i失活对此途径的影响不太明显,但内皮生长因子受体2基因的下调,导致血管信号转导的恶化,最有可能加剧Gtf2i突变表型的严重性。 Gtf2ird1和Gtf2i杂合子的一个子集显示小头畸形,发育迟缓以及骨骼和颅面缺陷,因此表明TFII-1蛋白的单倍蛋白充足会导致各种发育异常,这些异常通常与WBS有关。

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