Clinical and molecular characteristics of 1qter microdeletion syndrome: delineating a critical region for corpus callosum agenesis/hypogenesis

单倍率不足 胼胝体 胼胝体发育不全 亚端粒 小头畸形 胼胝体发育不全 生物 微缺失综合征 遗传学 多小脑回 比较基因组杂交 表型 病理 染色体 基因 癫痫 医学 解剖 神经科学
作者
Bregje W.M. van Bon,David A. Koolen,Renato Borgatti,Alex Magee,Sixto García‐Miñaúr,Liesbeth Rooms,William Reardon,Marcella Zollino,María Clara Bonaglia,Manuela De Gregori,Francesca Novara,Rita Grasso,Roberto Ciccone,Hermine A. van Duyvenvoorde,Anna M. Aalbers,Renzo Guerrini,Elisa Fazzi,Willy M. Nillesen,S McCullough,Sarina G. Kant,Carlo Marcelis,Rolph Pfundt,Nicole de Leeuw,Dominique Smeets,Erik A. Sistermans,J. M. Wit,Ben C.J. Hamel,Han G. Brunner,R. Frank Kooy,Orsetta Zuffardi,Bert B.A. de Vries
出处
期刊:Journal of Medical Genetics [BMJ]
卷期号:45 (6): 346-354 被引量:94
标识
DOI:10.1136/jmg.2007.055830
摘要

Background:

Patients with a microscopically visible deletion of the distal part of the long arm of chromosome 1 have a recognisable phenotype, including mental retardation, microcephaly, growth retardation, a distinct facial appearance and various midline defects including corpus callosum abnormalities, cardiac, gastro-oesophageal and urogenital defects, as well as various central nervous system anomalies. Patients with a submicroscopic, subtelomeric 1qter deletion have a similar phenotype, suggesting that the main phenotype of these patients is caused by haploinsufficiency of genes in this region.

Objective:

To describe the clinical presentation of 13 new patients with a submicroscopic deletion of 1q43q44, of which nine were interstitial, and to report on the molecular characterisation of the deletion size.

Results and conclusions:

The clinical presentation of these patients has clear similarities with previously reported cases with a terminal 1q deletion. Corpus callosum abnormalities were present in 10 of our patients. The AKT3 gene has been reported as an important candidate gene causing this abnormality. However, through detailed molecular analysis of the deletion sizes in our patient cohort, we were able to delineate the critical region for corpus callosum abnormalities to a 360 kb genomic segment which contains four possible candidate genes, but excluding the AKT3 gene.

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