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一种新的复合杂合性组织非特异性碱性磷酸酶(TNSALP)突变导致的婴儿低磷酸酯酶症——疏水侧链的功能证据?

Infantile hypophosphatasia due to a new compound heterozygous TNSALP mutation - functional evidence for a hydrophobic side-chain?

作者信息

Utsch B, Brun-Heath I, Staatz G, Gravou-Apostolatou C, Karle S, Jacobs U, Ludwig M, Zenker M, Dörr H-G, Rascher W, Mornet E, Dötsch J

机构信息

Department of Pediatrics, University of Erlangen-Nuremberg, Erlangen, Germany.

出版信息

Exp Clin Endocrinol Diabetes. 2009 Jan;117(1):28-33. doi: 10.1055/s-2008-1073157. Epub 2008 Jun 3.

Abstract

BACKGROUND

Infantile hypophosphatasia (IH) is an inherited disorder characterized by defective bone mineralization and a deficiency of alkaline phosphatase activity.

OBJECTIVE/DESIGN: The aim of the study was to evaluate a new compound heterozygous TNSALP mutation for its residual enzyme activity and localization of the comprised amino acid residues in a 3D-modeling.

PATIENT

We report on a 4-week old girl with craniotabes, severe defects of ossification, and failure to thrive. Typical clinical features as low serum alkaline phosphatase, high serum calcium concentration, increased urinary calcium excretion, and nephrocalcinosis were observed. Vitamin D was withdrawn and the patient was started on calcitonin and hydrochlorothiazide. Nonetheless, the girl died at the age of 5 months from respiratory failure.

RESULTS

Sequence analysis of the patient's TNSALP gene revealed two heterozygous mutations [c.653T>C (I201T), c.1171C>T (R374C)]. Transfection studies of the unique I201T variant in COS-7 cells yielded a mutant TNSALP protein with only a residual enzyme activity (3.7%) compared with wild-type, whereas the R374C variant was previously shown to reduce normal activity to 10.3%. 3D-modeling of the mutated enzyme showed that I201T resides in a region that does not belong to any known functional site.

CONCLUSION

We note that I201, which has been conserved during evolution, is buried in a hydrophobic pocket and, therefore, the I>T-change should affect its functional properties. Residue R374C is located in the interface between monomers and it has been previously suggested that this mutation affects dimerization. These findings explain the patient's clinical picture and severe course.

摘要

背景

婴儿低磷酸酯酶症(IH)是一种遗传性疾病,其特征为骨矿化缺陷和碱性磷酸酶活性缺乏。

目的/设计:本研究旨在评估一种新的复合杂合TNSALP突变的残余酶活性,并在三维模型中确定所涉及氨基酸残基的定位。

患者

我们报告了一名4周大的女孩,患有颅骨软化、严重骨化缺陷和发育不良。观察到典型的临床特征,如血清碱性磷酸酶水平低、血清钙浓度高、尿钙排泄增加和肾钙质沉着症。停用维生素D,并开始给患者使用降钙素和氢氯噻嗪。尽管如此,该女孩在5个月大时死于呼吸衰竭。

结果

对患者TNSALP基因的序列分析显示两个杂合突变[c.653T>C(I201T),c.1171C>T(R374C)]。在COS-7细胞中对独特的I201T变体进行转染研究,与野生型相比,产生的突变TNSALP蛋白仅具有残余酶活性(3.7%),而R374C变体先前已显示可将正常活性降低至10.3%。突变酶的三维模型显示,I201T位于不属于任何已知功能位点的区域。

结论

我们注意到,在进化过程中保守的I201被埋在一个疏水口袋中,因此,I>T的变化应该会影响其功能特性。残基R374C位于单体之间的界面,先前有人认为这种突变会影响二聚化。这些发现解释了患者的临床症状和严重病程。

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