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X 染色体重复/缺失导致短指畸形同源盒基因( SHOX )三体:对身高的临床意义。

Trisomy of the short stature homeobox-containing gene (SHOX) due to duplication/deletion of the X chomosome: clinical implications on the stature.

出版信息

Horm Res Paediatr. 2010;74(4):297-304. doi: 10.1159/000309418. Epub 2010 Aug 5.

Abstract

BACKGROUND

The karyotypes of 2 patients with abnormal stature and different phenotypes revealed one similar structural abnormality in the X chromosome by conventional cytogenetic studies and fluorescence in situ hybridization analysis (FISH). FISH strongly suggested the presence of two copies of the SHOX gene in the der(X) chromosome.

PATIENTS AND RESULTS

Patient 1 is a teenager girl with tall stature, behavioral disturbances and normal pubertal development. The abnormal X chromosome was present in all cells studied. Parent's karyotypes were normal. Patient 2 is a girl with gonadal dysgenesis, mild Turner syndrome phenotype and short stature. The karyotype was a mosaic 45,X/46,X,r(X) and der(X) chromosome presented in most metaphases of the cell lines. Parent's karyotypes were normal. Nearly all duplication of Xp and partial deletion of the long arm (Xq) from Xq27 or Xq21 to Xqter, in cases 1 and 2, respectively, were observed. In both patients, duplication of Xp translocated to deleted Xq occurred leading to a triplication of the pseudoautosomal region 1 (PAR1) where the SHOX gene is located (Xp22.3).

CONCLUSIONS

We propose that in some cases of trisomy for the SHOX gene, the effect of overdosage per se may affect the stature, even in patients with preserved ovarian function (case 1), and that estrogen deprivation may not always be a contributor for tall stature (case 2).

摘要

背景

两名身材异常、表型不同的患者经常规细胞遗传学研究和荧光原位杂交分析(FISH)发现 X 染色体存在一处相似的结构异常。FISH 强烈提示,在 X 染色体的 der(X) 上存在两个 SHOX 基因的拷贝。

患者和结果

患者 1 为一名青春期少女,身材高大,行为紊乱,青春期发育正常。异常的 X 染色体存在于所有研究的细胞中。父母的核型正常。患者 2 为一名性腺发育不全的女孩,特纳综合征表型较轻,身材矮小。其核型为嵌合体 45,X/46,X,r(X) 和 der(X) 染色体,存在于大多数细胞系的中期。父母的核型正常。在第 1 例和第 2 例中,均观察到 Xp 的部分重复和 Xq 长臂(Xq)的部分缺失(Xq27 或 Xq21 至 Xqter)。在这两例患者中,Xp 的重复易位到缺失的 Xq 上,导致假常染色体区 1(PAR1)的三倍体,SHOX 基因位于此处(Xp22.3)。

结论

我们提出,在某些情况下,SHOX 基因的三倍体本身的剂量效应可能会影响身高,即使患者保留卵巢功能(病例 1),雌激素缺乏也不一定总是导致身高过高(病例 2)。

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