A paternally inherited non‐sense variant c.424G>T (p.G142*) in the first exon of XLαs in an adult patient with hypophosphatemia and osteopetrosis

内分泌学 GNAS复合轨迹 内科学 低磷血症 甲状旁腺激素 骨质疏松症 骨吸收 生物 外显子 化学 医学 基因 遗传学
作者
Xiang Chen,Yang Meng,Mengjia Tang,Yan Wang,Ying Xie,Shan Wan,Haoming Tian,Xijie Yu
出处
期刊:Clinical Genetics [Wiley]
卷期号:97 (5): 712-722 被引量:4
标识
DOI:10.1111/cge.13734
摘要

Abstract XLαs, the extra‐large isoform of alpha‐subunit of the stimulatory guanine nucleotide‐binding protein (Gsα), is paternally expressed. The significance of XLαs in humans remains largely unknown. Here, we report a patient who presented with increased bone mass, hypophosphatemia, and elevated parathyroid hormone (PTH) levels. His serum calcium was in the lower limit of the normal range. Whole exome sequencing of this subject found a novel non‐sense variant c.424G>T (p. G142*) in the first exon of XLαs , which was inherited from his father and transmitted to his daughter. This variant was predicted to exclusively influence the expression of XLαs, while possibly having no significant effects on other gene products of this locus. Ellsworth‐Howard test revealed normal renal response to PTH in proband. Human SaOS2 cells transfected with mutant XLαs failed to generate cyclic adenosine monophosphate under PTH stimulation, indicating skeletal resistance to this hormone. This subject showed higher circulating sclerostin, dickkopf1, and osteoprotegerin (OPG) levels, while lower receptor activator of nuclear factor kappa‐B ligand/OPG ratio, leading to reduced bone resorption. Our findings indicate that XLαs plays a critical role in bone metabolism and GNAS locus should be considered as a candidate gene for high bone mass.

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