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使用X染色体特异性阵列MAPH对20名X连锁智力障碍患者进行筛查。

Screening of 20 patients with X-linked mental retardation using chromosome X-specific array-MAPH.

作者信息

Kousoulidou Ludmila, Parkel Sven, Zilina Olga, Palta Priit, Puusepp Helen, Remm Maido, Turner Gillian, Boyle Jackie, van Bokhoven Hans, de Brouwer Arjan, Van Esch Hilde, Froyen Guy, Ropers Hans-Hilger, Chelly Jamel, Moraine Claude, Gecz Jozef, Kurg Ants, Patsalis Philippos C

机构信息

Department of Cytogenetics, The Cyprus Institute of Neurology and Genetics, 1683 Nicosia, Cyprus.

出版信息

Eur J Med Genet. 2007 Nov-Dec;50(6):399-410. doi: 10.1016/j.ejmg.2007.09.001. Epub 2007 Sep 29.

Abstract

The rapid advancement of high-resolution DNA copy number assessment methods revealed the significant contribution of submicroscopic genetic imbalances to abnormal phenotypes, including mental retardation. In order to detect submicroscopic genetic imbalances, we have screened 20 families with X-linked mental retardation (XLMR) using a chromosome X-specific array-MAPH platform with median resolution of 238kb. Among the 20 families, 18 were experimental, as they were not previously screened with any microarray method, and two were blind controls with known aberrations, as they were previously screened by array-CGH. This study presents the first clinical application of chromosome X-specific array-MAPH methodology. The screening of 20 affected males from 20 unrelated XLMR families resulted in the detection of an unknown deletion, spanning a region of 7-23kb. Family studies and population screening demonstrated that the detected deletion is an unknown rare copy number variant. One of the control samples, carrying approximately 6-Mb duplication was correctly identified, moreover it was found to be interrupted by a previously unknown 19kb region of normal copy number. The second control 50kb deletion was not identified, as this particular region was not covered by array-MAPH probes. This study demonstrates that the chromosome X-specific array-MAPH platform is a valuable tool for screening patients with XLMR, or other X-linked disorders, and emerges the need for introducing new high-resolution screening methods for the detection of genetic imbalances.

摘要

高分辨率DNA拷贝数评估方法的迅速发展揭示了亚微观遗传失衡对包括智力迟钝在内的异常表型的重大影响。为了检测亚微观遗传失衡,我们使用了一种X染色体特异性阵列-MAPH平台(中位分辨率为238kb)对20个患有X连锁智力迟钝(XLMR)的家庭进行了筛查。在这20个家庭中,18个是实验组,因为他们之前未使用任何微阵列方法进行过筛查,另外两个是已知畸变的盲法对照,因为他们之前通过阵列比较基因组杂交进行过筛查。本研究展示了X染色体特异性阵列-MAPH方法的首次临床应用。对来自20个不相关的XLMR家庭的20名受影响男性进行筛查,结果检测到一个未知的缺失,跨越7 - 23kb的区域。家系研究和群体筛查表明,检测到的缺失是一个未知的罕见拷贝数变异。其中一个携带约6-Mb重复的对照样本被正确识别,此外还发现其被一个先前未知的19kb正常拷贝数区域中断。第二个对照样本的50kb缺失未被识别,因为该特定区域未被阵列-MAPH探针覆盖。本研究表明,X染色体特异性阵列-MAPH平台是筛查XLMR患者或其他X连锁疾病患者的有价值工具,并凸显了引入新的高分辨率筛查方法以检测遗传失衡的必要性。

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