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人类胰岛素样生长因子I受体(IGF1R)Arg59Ter突变的临床和功能特征:对人类IGF1R基因剂量效应的影响

Clinical and functional characteristics of the human Arg59Ter insulin-like growth factor i receptor (IGF1R) mutation: implications for a gene dosage effect of the human IGF1R.

作者信息

Raile K, Klammt J, Schneider A, Keller A, Laue S, Smith R, Pfäffle R, Kratzsch J, Keller E, Kiess W

机构信息

Pediatric Endocrinology and Diabetes, Charité-Universitätsmedizin Berlin, Augustenburgerplatz 1, D-13353 Berlin, Germany.

出版信息

J Clin Endocrinol Metab. 2006 Jun;91(6):2264-71. doi: 10.1210/jc.2005-2146. Epub 2006 Mar 28.

Abstract

CONTEXT

Signaling via the IGF-I receptor (IGF-IR) is crucial for normal prenatal and postnatal growth. The heterozygous IGF-IR mutation Arg59Ter resulted in reduced IGF-IR expression and represents haploinsufficiency of the human IGF1R gene.

OBJECTIVE

We studied clinical and in vitro aspects of a human IGF1R gene dosage effect. We provide detailed clinical data on the two half-brothers and their mother with the Arg59Ter mutation. Arg59Ter and control fibroblasts were examined for functionality of IGF-I and insulin-stimulated receptor phosphorylation and signal transduction.

RESULTS

The two brothers presented with primary microcephaly, mild mental retardation, and intrauterine as well as postnatal growth deficits. After GH therapy (30 microg/kg.d) for 24 months, the growth deficit in the propositus decreased by +1.0 sd. There was no clinical evidence for impaired glucose tolerance or hypoglycemia in all Arg59Ter subjects. In vitro, IGF-IR-deficient Arg59Ter cells expressed less IGF-IR and unchanged insulin receptor (IR) protein. Receptor autophosphorylation and phosphorylation of downstream protein kinase B/Akt exhibited resistance to IGF-I but showed an augmented response to insulin in Arg59Ter cells. Decreased IGF-IR content was accompanied by a reduction of IGF-IR/IR receptor hybrids, and therefore, increased levels of IR/IR homodimers probably explain increased insulin-stimulated receptor autophosphorylation and Akt phosphorylation.

CONCLUSIONS

In vivo and in vitro IGF-I resistance in Arg59Ter subjects and fibroblasts indicates a human IGF1R gene dosage effect involving not only the IGF-IR, but also IGF-IR/IR hybrids. The abundance of both the IGF-IR protein and IGF-IR/IR hybrid receptors may have an impact on human growth, organ function, and glucose metabolism.

摘要

背景

通过胰岛素样生长因子-I受体(IGF-IR)进行的信号传导对于正常的产前和产后生长至关重要。杂合的IGF-IR突变Arg59Ter导致IGF-IR表达降低,代表人类IGF1R基因的单倍剂量不足。

目的

我们研究了人类IGF1R基因剂量效应的临床和体外方面。我们提供了两名同父异母兄弟及其患有Arg59Ter突变的母亲的详细临床数据。对Arg59Ter和对照成纤维细胞进行了IGF-I和胰岛素刺激的受体磷酸化及信号转导功能的检测。

结果

这两名兄弟表现为原发性小头畸形、轻度智力障碍以及宫内和出生后生长发育迟缓。在接受生长激素治疗(30微克/千克·天)24个月后,先证者的生长发育迟缓减少了+1.0标准差。在所有Arg59Ter受试者中均无糖耐量受损或低血糖的临床证据。在体外,缺乏IGF-IR的Arg59Ter细胞表达的IGF-IR较少,而胰岛素受体(IR)蛋白未发生变化。在Arg59Ter细胞中,受体自身磷酸化以及下游蛋白激酶B/Akt的磷酸化对IGF-I表现出抗性,但对胰岛素的反应增强。IGF-IR含量的降低伴随着IGF-IR/IR受体杂合体的减少,因此,IR/IR同型二聚体水平的升高可能解释了胰岛素刺激的受体自身磷酸化和Akt磷酸化的增加。

结论

Arg59Ter受试者和成纤维细胞在体内和体外对IGF-I的抗性表明人类IGF1R基因剂量效应不仅涉及IGF-IR,还涉及IGF-IR/IR杂合体。IGF-IR蛋白和IGF-IR/IR杂合受体的丰度可能对人类生长、器官功能和葡萄糖代谢产生影响。

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