An activating calcium-sensing receptor variant with biased signaling reveals a critical residue for Gα11 coupling.

IF 5.1 1区 医学 Q1 ENDOCRINOLOGY & METABOLISM Journal of Bone and Mineral Research Pub Date : 2025-02-02 DOI:10.1093/jbmr/zjae199
Matthew R Benson, Rachael A Wyatt, Michael A Levine, Caroline M Gorvin
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Abstract

Autosomal dominant hypocalcemia (ADH) is due to enhanced calcium-dependent signaling caused by heterozygous gain-of-function (GOF) variants in the CASR gene (ADH1) or in the GNA11 gene, encoding Gα11 (ADH2). Both ADH1 and ADH2 are associated with hypocalcemia and normal or inappropriately low levels of circulating PTH. ADH1 patients typically manifest hypercalciuria, while ADH2 is associated with short stature in approximately 42% of cases. We evaluated a 10-yr-old boy with hypoparathyroidism and short stature. Biochemical analyses revealed hypocalcemia, hyperphosphatemia, and inconsistent hypercalciuria. Genetic analyses revealed a de novo heterozygous p.Leu723Arg variant in CASR. We characterized the expression of recombinant WT and Leu723Arg calcium-sensing receptor (CaSR) proteins in HEK293 cells and assessed G protein activation in vitro by CaSR using bioluminescence resonance energy transfer. Transient expression studies showed the Leu723Arg variant was normally expressed but resulted in a significantly lower EC50 for extracellular calcium activation of G11 but not other G proteins (ie, Gi, Gq, Gs). The Leu723Arg substitution has a novel GOF phenotype that leads to biased CaSR activation of G11 signaling, suggesting that residue 723 specifies activation of G11 but not other G proteins. Similar studies of a previously described CaSR variant associated with hypoparathyroidism and short stature, Leu616Val, showed no changes in any G protein pathways, indicating it is likely to be a benign variant. Given the preferential activation of G11 by the Leu723Arg CaSR variant, we propose that the patient's short stature shares a similar basis to that in patients with ADH2 due to GOF variants in GNA11.

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一个带有偏倚信号的激活CaSR变体揭示了g - α11偶联的关键残基。
常染色体显性低钙血症(ADH)是由于CASR基因(ADH1)或编码Gα11 (ADH2)的GNA11基因的杂合功能获得(GOF)变异引起的钙依赖性信号增强。ADH1和ADH2都与低钙血症和循环甲状旁腺激素正常或不适当的低水平有关。ADH1患者通常表现为高钙尿,而约42%的ADH2患者伴有身材矮小。我们评估了一个患有甲状旁腺功能低下和身材矮小的10岁男孩。生化分析显示低钙血症、高磷血症和不一致的高钙尿。遗传分析显示,在CASR中存在一个全新的杂合p.Leu723Arg变异。我们利用生物发光共振能量转移(BRET)技术对重组野生型和Leu723Arg CaSR蛋白在HEK293细胞中的表达进行了表征,并通过CaSR技术评估了G蛋白在体外的活化情况。瞬时表达研究表明,Leu723Arg变体正常表达,但导致G11细胞外钙活化的EC50显著降低,而其他G蛋白(即Gi, Gq, Gs)则没有。Leu723Arg取代具有一种新的GOF表型,导致G11信号的偏CaSR激活,这表明残基723指定G11激活,而不是其他G蛋白。对先前描述的与甲状旁腺功能低下和身材矮小相关的CaSR变异Leu616Val的类似研究显示,任何G蛋白通路都没有变化,表明它可能是一种良性变异。考虑到Leu723Arg CaSR变异对G11的优先激活,我们认为患者的身材矮小与由于GNA11中的GOF变异而导致的ADH2患者的身材矮小具有相似的基础。
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来源期刊
Journal of Bone and Mineral Research
Journal of Bone and Mineral Research 医学-内分泌学与代谢
CiteScore
11.30
自引率
6.50%
发文量
257
审稿时长
2 months
期刊介绍: The Journal of Bone and Mineral Research (JBMR) publishes highly impactful original manuscripts, reviews, and special articles on basic, translational and clinical investigations relevant to the musculoskeletal system and mineral metabolism. Specifically, the journal is interested in original research on the biology and physiology of skeletal tissues, interdisciplinary research spanning the musculoskeletal and other systems, including but not limited to immunology, hematology, energy metabolism, cancer biology, and neurology, and systems biology topics using large scale “-omics” approaches. The journal welcomes clinical research on the pathophysiology, treatment and prevention of osteoporosis and fractures, as well as sarcopenia, disorders of bone and mineral metabolism, and rare or genetically determined bone diseases.
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