首页> 美国卫生研究院文献>Frontiers in Endocrinology >Identification and Functional Characterization of a Novel Mutation in the Human Calcium-Sensing Receptor That Co-Segregates With Autosomal-Dominant Hypocalcemia
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Identification and Functional Characterization of a Novel Mutation in the Human Calcium-Sensing Receptor That Co-Segregates With Autosomal-Dominant Hypocalcemia

机译:人钙敏感受体与常染色体显性低血钙症共分离的新型突变的鉴定和功能表征

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摘要

The human calcium-sensing receptor (CASR) is the key controller of extracellular Cao2+ homeostasis, and different mutations in the CASR gene have been linked to different calcium diseases, such as familial hypocalciuric hypercalcemia, severe hyperparathyroidism, autosomal-dominant hypocalcemia (ADH), and Bartter’s syndrome type V. In this study, two generations of a family with biochemically and clinically confirmed ADH who suffered severe muscle pain, arthralgia, tetany, abdominal pain, and fatigue were evaluated for mutations in the CASR gene. The study comprises genotyping of all family members, functional characterization of a potential mutant receptor by in vitro analysis related to the wild-type receptor to reveal an association between the genotype and phenotype in the affected family members. The in vitro analysis of functional characteristics includes measurements of inositol trisphosphate accumulation, Ca2+ mobilization in response to [Ca2+]o-stimulation and receptor expression. The results reveal a significant leftward shift of inositol trisphosphate accumulation as a result of the “gain-of-function” mutant receptor and surprisingly a normalization of the response in (Ca2+)i release in the downstream pathway and additionally the maximal response of (Ca2+)i release was significantly decreased compared to the wild type. However, no gross differences were seen in D126V and the D126V/WT CASR dimeric >250 kDa band expression compared to the WT receptor, however, the D126V and D126V/WT CASR immature ~140 kDa species appear to have reduced expression compared to the WT receptor. In conclusion, in this study, a family with a clinical diagnosis of ADH in two generations was evaluated to identify a mutation in the CASR gene and reveal an association between genotype and phenotype in the affected family members. The clinical condition was caused by a novel, activating, missense mutation (D126V) in the CASR gene and the in vitro functional characteristics of the mutation co-segregated with their individual phenotype.
机译:人钙敏感受体(CASR)是细胞外Cao 2 + 动态平衡的关键控制因素,并且CASR基因的不同突变与不同的钙疾病有关,例如家族性低钙血症,高甲状旁腺功能亢进,常染色体显性低钙血症(ADH)和V型巴特综合征(Bartter's syndrome V型)。在这项研究中,评估了两代经生化和临床证实患有严重肌肉疼痛,关节痛,手足抽搐,腹痛和疲劳的ADH的突变。 CASR基因。该研究包括所有家族成员的基因分型,通过与野生型受体相关的体外分析对潜在突变体受体的功能表征,以揭示受影响家族成员的基因型和表型之间的关联。功能特征的体外分析包括测量三磷酸肌醇的积累,响应[Ca 2 + ] o刺激和受体表达的Ca 2 + 动员。结果表明,由于“功能获得”突变受体,肌醇三磷酸积累明显向左移动,并且令人惊讶地,下游的(Ca 2 + )i释放响应正常化与野生型相比,(Ca 2 + )i释放的最大途径显着降低。但是,与WT受体相比,D126V和D126V / WT CASR二聚体> 250 kDa条带表达没有明显差异,但是,与WT相比,未成熟的〜140 kDa物种D126V和D126V / WT CASR的表达降低了。受体。总之,在这项研究中,评估了具有两代临床诊断ADH的家庭,以鉴定CASR基因中的突变,并揭示受影响家庭成员的基因型和表型之间的关联。临床状况是由CASR基因中的一个新的,激活的,错义突变(D126V)以及该突变与其各自的表型共同分离的体外功能特性引起的。

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