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[促甲状腺激素释放激素诱导蛋白(TPIT)突变揭示了垂体分化的新模式并解释了孤立性促肾上腺皮质激素缺乏症]

[Tpit mutations reveal a new model of pituitary differentiation and account for isolated ACTH deficiency].

作者信息

Pulichino Anne-Marie, Vallette-Kasic Sophie, Couture Catherine, Brue Thierry, Drouin Jacques

机构信息

Laboratoire de Génétique moléculaire, Institut de Recherches cliniques de Montréal (IRCM), Montréal, Québec, H2W 1R7 Canada.

出版信息

Med Sci (Paris). 2004 Nov;20(11):1009-13. doi: 10.1051/medsci/200420111009.

Abstract

Pituitary hormone-producing cells differentiate sequentially from a common epithelial primordium, Rathke's pouch, under the combinatorial action of a subset of tissue- and cell-restricted transcription factors. Some factors have been implicated in early events of pituitary induction and morphogenesis while other factors like Pit-1 and SF-1 have been associated with differentiation of particular lineages. In POMC-expressing cells, Pitx1, NeuroD1 and Tpit were shown to be important for cell specific transcription of the POMC gene. Since Tpit is exclusively expressed in pituitary POMC-expressing lineages, the corticotrophs and melanotrophs, we investigated the TPIT gene coding sequences in 17 patients presenting with congenital isolated ACTH deficiency (IAD). We demonstrated that human TPIT gene mutations cause a neonatal onset form of IAD (8/11), but not juvenile forms of this deficiency (0/6). In the absence of glucocorticoid replacement, IAD can lead to neonatal death by acute adrenal insufficiency. To assess the importance of Tpit in pituitary differentiation and function, we produced Tpit-null mice. Concordant with the human phenotype, Tpit-null mice have IAD : plasma ACTH is greatly reduced in these mice, their plasma corticosterone is undetectable and the adrenals are hypoplastic. Analysis of the pituitary in Tpit-null mice revealed multiple roles of this factor in cell differentiation. First, Tpit is a positive regulator for POMC cell differentiation. Tpit is also a negative regulator of the pituitary gonadotroph fate. Thus, Tpit operates as a molecular switch to orient differentiation of a common precursor towards either POMC or gonadotroph fate. A binary choice model of pituitary cell differentiation is presented.

摘要

垂体激素产生细胞在一组组织和细胞限制性转录因子的组合作用下,从一个共同的上皮原基——拉特克囊依次分化而来。一些因子参与了垂体诱导和形态发生的早期事件,而其他因子如Pit-1和SF-1则与特定谱系的分化有关。在表达促肾上腺皮质激素原(POMC)的细胞中,Pitx1、NeuroD1和Tpit被证明对POMC基因的细胞特异性转录很重要。由于Tpit仅在垂体中表达POMC的谱系(促肾上腺皮质激素细胞和促黑素细胞)中表达,我们研究了17例先天性孤立性促肾上腺皮质激素缺乏症(IAD)患者的TPIT基因编码序列。我们证明,人类TPIT基因突变会导致新生儿期发病的IAD(8/11),但不会导致青少年期的这种缺乏症(0/6)。在没有糖皮质激素替代治疗的情况下,IAD可因急性肾上腺功能不全导致新生儿死亡。为了评估Tpit在垂体分化和功能中的重要性,我们制备了Tpit基因敲除小鼠。与人类表型一致,Tpit基因敲除小鼠患有IAD:这些小鼠的血浆促肾上腺皮质激素大幅降低,血浆皮质酮检测不到,肾上腺发育不全。对Tpit基因敲除小鼠垂体的分析揭示了该因子在细胞分化中的多种作用。首先,Tpit是POMC细胞分化的正调节因子。Tpit也是垂体促性腺激素细胞命运的负调节因子。因此,Tpit作为一个分子开关,引导共同前体细胞向POMC或促性腺激素细胞命运分化。本文提出了垂体细胞分化的二元选择模型。

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