首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Variable and tissue-specific hormone resistance in heterotrimeric Gs protein α-subunit (Gsα) knockout mice is due to tissue-specific imprinting of the Gsα gene
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Variable and tissue-specific hormone resistance in heterotrimeric Gs protein α-subunit (Gsα) knockout mice is due to tissue-specific imprinting of the Gsα gene

机译:三聚体Gs蛋白α-亚基(Gsα)基因敲除小鼠中可变的和组织特异性激素抵抗是由于Gsα基因的组织特异性印迹

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摘要

Albright hereditary osteodystrophy (AHO), an autosomal dominant disorder characterized by short stature, obesity, and skeletal defects, is associated with heterozygous inactivating mutations of GNAS1, the gene encoding the heterotrimeric G protein α-subunit (Gsα) that couples multiple receptors to the stimulation of adenylyl cyclase. It has remained unclear why only some AHO patients present with multihormone resistance and why AHO patients demonstrate resistance to some hormones [e.g., parathyroid hormone (PTH)] but not to others (e.g., vasopressin), even though all activate adenylyl cyclase. We generated mice with a null allele of the mouse homolog Gnas. Homozygous Gs deficiency is embryonically lethal. Heterozygotes with maternal (m−/+) and paternal (+/p−) inheritance of the Gnas null allele have distinct phenotypes, suggesting that Gnas is an imprinted gene. PTH resistance is present in m−/+, but not +/p−, mice. Gsα expression in the renal cortex (the site of PTH action) is markedly reduced in m−/+ but not in +/p− mice, demonstrating that the Gnas paternal allele is imprinted in this tissue. Gnas is also imprinted in brown and white adipose tissue. The maximal physiological response to vasopressin (urinary concentrating ability) is normal in both m−/+ and +/p− mice and Gnas is not imprinted in the renal inner medulla (the site of vasopressin action). Tissue-specific imprinting of Gnas is likely the mechanism for variable and tissue-specific hormone resistance in these mice and a similar mechanism might explain the variable phenotype in AHO.
机译:奥尔布赖特遗传性骨营养不良症(AHO)是一种常染色体显性遗传疾病,以身材矮小,肥胖和骨骼缺陷为特征,与GNAS1的杂合失活突变相关,该基因编码异源三聚体G蛋白α亚基(Gsα),该基因将多个受体偶联至GNAS1。刺激腺苷酸环化酶。尚不清楚为什么只有部分AHO患者表现出多激素耐药性,以及为什么AHO患者对某些激素(例如甲状旁腺激素(PTH))表现出耐药性,而对其他激素(例如血管加压素)却没有表现出耐药性,尽管它们都激活了腺苷酸环化酶。我们生成了具有小鼠同源物Gnas无效等位基因的小鼠。纯合Gs缺乏症在胚胎上是致命的。具有母体(m-/ +)和母体(+ / p-)遗传Gnas无效等位基因的杂合子具有不同的表型,表明Gnas是一个印迹基因。 PTH耐药性存在于m-/ +小鼠中,但不存在+ / p-小鼠。肾皮质(PTH作用部位)中的Gsα表达在m-/ +小鼠中显着降低,但在+ / p-小鼠中并未降低,表明Gnas父亲等位基因印在该组织中。鼻息肉也印在棕色和白色脂肪组织中。在m-/ +和+ / p-小鼠中,对血管加压素的最大生理反应(尿液浓缩能力)都是正常的,并且在肾内侧髓质(血管加压素作用的部位)中没有印有Gnas。 Gnas的组织特异性印迹可能是这些小鼠中可变激素和组织特异性激素抵抗的机制,类似的机制可能解释了AHO中的可变表型。

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