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一名家族性低钙血症性高钙血症婴儿中钙敏感受体突变的鉴定与功能特征分析

Identification and Functional Characterization of a Calcium-Sensing Receptor Mutation in an Infant with Familial Hypocalciuric Hypercalcemia.

作者信息

Papadopoulou Anna, Gole Evangelia, Melachroinou Katerina, Meristoudis Christos, Siahanidou Tania, Papadimitriou Anastasios

机构信息

Athens University Medical School, University General Hospital "Attikon", Third Department of Pediatrics, Athens, Greece, Phone: +30 2105832228 E-mail:

出版信息

J Clin Res Pediatr Endocrinol. 2016 Sep 1;8(3):341-6. doi: 10.4274/jcrpe.2800. Epub 2016 Apr 18.

Abstract

Familial hypocalciuric hypercalcemia (FHH) is an autosomal dominant disorder, associated with inactivating mutations of the calcium-sensing receptor (CaSR). To evaluate the functional significance of a CaSR mutation, identified in a young infant who presented with hypercalcemia and hypocalciuria. The CaSR gene coding sequences were analyzed by polymerase chain reaction amplification and direct sequencing analysis. The mutation identified was introduced by site-directed mutagenesis into a wild-type (WT) CaSR plasmid, and human embryonic kidney 293 T cells were transfected with either the WT or mutant CaSR. The function of the mutated CaSR protein was analyzed by evaluating the free intracellular calcium [(Ca2+)i] response after challenge with extracellular calcium (Ca2+). We identified a heterozygous mutation c.772_773delGTinsA in exon 4 resulting in the substitution of amino acid valine (Val) with amino acid arginine (Arg) and the premature pause of the translation 46 amino acids later (Val258ArgfsTer47). Functional assay showed that cells transfected with the mutant CaSR had a significantly poorer response to extracellular Ca2+ stimulation compared with the WT. We have shown that the c.772_773delGTinsA mutation causes a significant alteration of CaSR function leading to features of FHH in an affected young infant since the first months of life.

摘要

家族性低钙血症性高钙血症(FHH)是一种常染色体显性疾病,与钙敏感受体(CaSR)的失活突变有关。为了评估在一名表现为高钙血症和低钙尿症的幼儿中鉴定出的CaSR突变的功能意义,通过聚合酶链反应扩增和直接测序分析对CaSR基因编码序列进行了分析。将鉴定出的突变通过定点诱变引入野生型(WT)CaSR质粒,并将野生型或突变型CaSR转染到人胚肾293 T细胞中。通过评估细胞外钙(Ca2+)刺激后细胞内游离钙[(Ca2+)i]反应,分析突变型CaSR蛋白的功能。我们在第4外显子中鉴定出一个杂合突变c.772_773delGTinsA,导致缬氨酸(Val)被精氨酸(Arg)取代,并在46个氨基酸后提前终止翻译(Val258ArgfsTer47)。功能分析表明,与野生型相比,转染突变型CaSR的细胞对细胞外Ca2+刺激的反应明显较差。我们已经表明,c.772_773delGTinsA突变导致CaSR功能发生显著改变,自生命的最初几个月起就在一名受影响的幼儿中导致FHH的特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9663/5096500/1037ebd5018f/JCRPE-8-341-g1.jpg

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