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由于7q36.3处不同的细胞遗传学重排导致 Sonic Hedgehog 基因和 HLXB9 基因缺失,从而出现前脑无裂畸形谱和库拉里诺综合征的最小临床表型。

Minimal clinical expression of the holoprosencephaly spectrum and of Currarino syndrome due to different cytogenetic rearrangements deleting the Sonic Hedgehog gene and the HLXB9 gene at 7q36.3.

作者信息

Horn Denise, Tönnies Holger, Neitzel Heidemarie, Wahl Dagmar, Hinkel Georg Klaus, von Moers Arpad, Bartsch Oliver

机构信息

Institute of Human Genetics, Charité, Humboldt University Berlin, Augustenburger Platz 1, D-13353 Berlin, Germany.

出版信息

Am J Med Genet A. 2004 Jul 1;128A(1):85-92. doi: 10.1002/ajmg.a.30031.

Abstract

We report clinical, cytogenetic, and molecular cytogenetic studies on four patients with subtle or submicroscopic 7q36 deletions either of de novo origin or resulting from a cryptic parental translocation. Fluorescence in situ hybridization (FISH) studies indicated that in all four patients, the Sonic Hedgehog gene (SHH) and the homeobox gene HLXB9, among others, are comprised in the deletions. Besides mental retardation and short stature, all patients showed only minimal manifestations of the holoprosencephaly (HPE) spectrum and only one displayed symptoms of the Currarino syndrome. Patient 1 had a de novo 7q36.1-qter deletion and showed microcephaly, ptosis, sacral agenesis, tethered cord, but no structural brain anomaly. Patient 2 had a submicroscopic de novo 7q36 deletion detected by FISH, and showed facial and cerebral microsigns of the HPE spectrum. Patient 3 had a 7q36 deletion found by subtelomere FISH testing that was the unbalanced product of a subtle maternal 7q;10q translocation. She presented facial and ocular microsigns, but no structural abnormality of the brain. Patient 4 showed no specific syndromal pattern and was found to have a cryptic unbalanced de novo translocation of the terminal parts of chromosomes 7q and 9p by subtelomere FISH. Patients 2, 3, and 4 represent the first report of a de novo submicroscopic 7q36 deletion, the second report of a familial subtle translocation of 7q36, and the first report of an unbalanced de novo submicroscopic translocation of 7q36, respectively. Our results stress the importance of 7q36 deletion studies by FISH in patients with microsigns of the HPE spectrum.

摘要

我们报告了对4例7q36存在细微或亚微观缺失患者的临床、细胞遗传学和分子细胞遗传学研究,这些缺失要么是新发的,要么是由隐匿的亲代易位导致的。荧光原位杂交(FISH)研究表明,在所有4例患者中,缺失区域包含了音猬因子基因(SHH)和同源框基因HLXB9等。除了智力发育迟缓及身材矮小外,所有患者仅表现出全前脑畸形(HPE)谱系的轻微症状,只有1例表现出库拉里诺综合征的症状。患者1为新发的7q36.1-qter缺失,表现为小头畸形、上睑下垂、骶骨发育不全、脊髓栓系,但无脑部结构异常。患者2通过FISH检测到亚微观的新发7q36缺失,并表现出HPE谱系的面部和脑部细微体征。患者3通过端粒FISH检测发现7q36缺失,这是母亲7q;10q细微易位的不平衡产物。她表现出面部和眼部细微体征,但无脑部结构异常。患者4未表现出特定的综合征模式,通过端粒FISH发现其存在7号染色体长臂和9号染色体短臂末端隐匿的新发不平衡易位。患者2、3和4分别代表了新发亚微观7q36缺失的首例报告、7q36家族性细微易位的第二例报告以及7q36新发亚微观不平衡易位的首例报告。我们的结果强调了对具有HPE谱系细微体征患者进行FISH检测7q36缺失研究的重要性。

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