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一名患有严重先天性板层状皮肤骨瘤儿童的GNAS1突变与Cbfa1表达异常

GNAS1 mutation and Cbfa1 misexpression in a child with severe congenital platelike osteoma cutis.

作者信息

Yeh G L, Mathur S, Wivel A, Li M, Gannon F H, Ulied A, Audi L, Olmstead E A, Kaplan F S, Shore E M

机构信息

Department of Orthopaedic Surgery, University of Pennsylvania, School of Medicine, Philadelphia 19104-6081, USA.

出版信息

J Bone Miner Res. 2000 Nov;15(11):2063-73. doi: 10.1359/jbmr.2000.15.11.2063.

DOI:10.1359/jbmr.2000.15.11.2063
PMID:11092389
Abstract

We evaluated a 7-year-old girl with severe platelike osteoma cutis (POC), a variant of progressive osseous heteroplasia (POH). The child had congenital heterotopic ossification of dermis and subcutaneous fat that progressed to involve deep skeletal muscles of the face, scalp, and eyes. Although involvement of skeletal muscle is a prominent feature of POH, heterotopic ossification has not been observed in the head, face, or extraocular muscles. The cutaneous ossification in this patient was suggestive of Albright hereditary osteodystrophy (AHO); however, none of the other characteristic features of AHO were expressed. Inactivating mutations of the GNAS1 gene, which encodes the alpha-subunit of the stimulatory G protein of adenylyl cyclase, is the cause of AHO. Mutational analysis of GNAS1 using genomic DNA of peripheral blood and of lesional and nonlesional tissue from our patient revealed a heterozygous 4-base pair (bp) deletion in exon 7, identical to mutations that have been found in some AHO patients. This 4-bp deletion in GNAS1 predicts a protein reading frameshift leading to 13 incorrect amino acids followed by a premature stop codon. To investigate pathways of osteogenesis by which GNAS1 may mediate its effects, we examined the expression of the obligate osteogenic transcription factor Cbfa1/RUNX2 in lesional and uninvolved dermal fibroblasts from our patient and discovered expression of bone-specific Cbfa1 messenger RNA (mRNA) in both cell types. These findings document severe heterotopic ossification in the absence of AHO features caused by an inactivating GNAS1 mutation and establish the GNAS1 gene as the leading candidate gene for POH.

摘要

我们评估了一名患有严重板层状皮肤骨瘤(POC)的7岁女孩,POC是进行性骨化性纤维发育不良(POH)的一种变体。该患儿存在真皮和皮下脂肪的先天性异位骨化,病变进展至累及面部、头皮和眼部的深层骨骼肌。虽然骨骼肌受累是POH的一个显著特征,但在头部、面部或眼外肌中尚未观察到异位骨化。该患者的皮肤骨化提示为奥尔布赖特遗传性骨营养不良(AHO);然而,AHO的其他特征均未表现出来。编码腺苷酸环化酶刺激性G蛋白α亚基的GNAS1基因的失活突变是AHO的病因。利用我们患者外周血以及病变和非病变组织的基因组DNA对GNAS1进行突变分析,结果显示外显子7存在一个杂合的4碱基对(bp)缺失,这与在一些AHO患者中发现的突变相同。GNAS1基因中的这种4 bp缺失预计会导致蛋白质阅读框移位,从而产生13个错误的氨基酸,随后出现一个提前的终止密码子。为了研究GNAS1可能介导其作用的成骨途径,我们检测了患者病变和未受累皮肤成纤维细胞中必需的成骨转录因子Cbfa1/RUNX2的表达,发现两种细胞类型中均有骨特异性Cbfa1信使核糖核酸(mRNA)表达。这些发现证明了由GNAS1失活突变导致的在无AHO特征情况下的严重异位骨化,并确定GNAS1基因为POH的主要候选基因。

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