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Functional characterization of a human POU1F1 mutation associated with isolated growth hormone deficiency: a novel etiology for IGHD

机译:与孤立的生长激素缺乏症有关的人类POU1F1突变的功能表征:IGHD的新病因

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摘要

POU1F1, a pituitary-specific POU-homeo domain transcription factor, plays an essential role in the specification of the somatotroph, lactotroph and thyrotroph lineages and in the activation of GH1, PRL and TSH beta transcription. Individuals with mutations in POU1F1 present with combined deficiency of GH, PRL and TSH. Here, we identified a heterozygous missense mutation with evidence of pathogenicity, at the POU1F1 locus, in a large family in which an isolated growth hormone deficiency segregates as an autosomal dominant trait. The corresponding p.Pro76Leu mutation maps to a conserved site within the POU1F1 transactivation domain. Bandshift assays revealed that the mutation alters wild-type POU1F1 binding to cognate sites within the hGH-LCR and hGH1 promoter, but not to sites within the PRL promoter, and it selectively increases binding affinity to sites within the hGH-LCR. Co-immunoprecipitation studies reveal that this substitution enhances interactions of POU1F1 with three of its cofactors, PITX1, LHX3a and ELK1, and that residue 76 plays a critical role in these interactions. The insertion of the mutation at the mouse Pou1f1 locus results in a dramatic loss of protein expression despite normal mRNA concentrations. Mice heterozygous for the p.Pro76Leu mutation were phenotypically normal while homozygotes demonstrated a dwarf phenotype. Overall, this study unveils the involvement of POU1F1 in dominantly inherited isolated GH deficiency and demonstrates a significant impact of the Pro76Leu mutation on DNA-binding activities, alterations in transactivating functions and interactions with cofactors. Our data further highlight difficulties in modeling human genetic disorders in the mouse despite apparent conservation of gene expression pathways and physiologic functions.
机译:POU1F1是垂体特异性的POU-homeo域转录因子,在体养,乳养和甲状腺营养谱系的规范以及GH1,PRL和TSHβ转录的激活中起着至关重要的作用。 POU1F1突变的个体表现为GH,PRL和TSH的综合缺乏。在这里,我们在一个大家庭中的POU1F1位点鉴定了一个具有致病性证据的杂合错义突变,在该大家族中,孤立的生长激素缺乏症作为常染色体显性特征分离。对应的p.Pro76Leu突变映射到POU1F1反式激活域内的保守位点。带移分析显示,该突变改变了野生型POU1F1与hGH-LCR和hGH1启动子内的同源位点的结合,但不改变与PRL启动子内的位点的结合,并且选择性地增加了与hGH-LCR内位点的结合亲和力。免疫共沉淀研究表明,这种取代增强了POU1F1与它的三个辅助因子PITX1,LHX3a和ELK1的相互作用,并且残基76在这些相互作用中起关键作用。尽管mRNA浓度正常,但在小鼠Pou1f1基因座上插入突变会导致蛋白质表达急剧下降。 p.Pro76Leu突变杂合的小鼠在表型上是正常的,而纯合子表现出矮小的表型。总体而言,这项研究揭示了POU1F1参与显性遗传的孤立GH缺乏症,并证明了Pro76Leu突变对DNA结合活性,反式激活功能的改变以及与辅因子相互作用的重大影响。尽管基因表达途径和生理功能明显保守,我们的数据进一步凸显了在小鼠中模拟人类遗传疾病的困难。

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