首页> 外文期刊>American journal of medical genetics, Part A >Small supernumerary marker chromosome 15 and a ring chromosome 15 associated with a 15q26.3 deletion excluding the IGF1R IGF1R gene
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Small supernumerary marker chromosome 15 and a ring chromosome 15 associated with a 15q26.3 deletion excluding the IGF1R IGF1R gene

机译:小的超值标记染色体15和环染色体15与15q26.3缺失相关的,除了IGF1R IGF1R基因

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摘要

Array comparative genomic hybridization is essential in the investigation of chromosomal rearrangements associated with epilepsy, intellectual disability, and dysmorphic features. In many cases deletions, duplications, additional marker chromosomes, and ring chromosomes originating from chromosome 15 lead to abnormal phenotypes. We present a child with epilepsy, cardiac symptoms, severely delayed mental and growth development, behavioral disturbances and characteristic dysmorphic features showing a ring chromosome 15 and a small supernumerary marker chromosome. Array CGH detected a 1?Mb deletion of 15q26.3 in a ring chromosome 15 and a 2.6?Mb copy number gain of 15q11.2 corresponding to a small supernumerary marker chromosome involving proximal 15q. Our findings add to previously published results of 15q11q13 duplications and 15q26 terminal deletions. Based on our study we can support the previous reported limited information about the role of SELS , SNRPA1 , and PCSK6 genes in the development of the heart morphology. On the other hand, we found that the copy number loss of our patient did not involve the IGF1R gene which is often associated with growth retardation (short stature and decreased weight). We hypothesize that haploinsufficiency of the 15q26 genomic region distal to IGF1R gene might be related to growth disturbance; however, presence of the ring chromosome 15 itself could also be responsible for the growth delay.
机译:阵列比较基因组杂交对于调查与癫痫,智力障碍和疑似特征相关的染色体重排。在许多情况下,缺失,重复,额外的标记染色体和源自染色体15的环染色体导致异常表型。我们患有癫痫,心脏症状,严重延迟的心理和生长发育,行为紊乱和特征性疑难态特征,显示出一个环形染色体15和小超值标记染色体。阵列CGH在环染色体15中检测到15Q26.3的1?MB缺失15q26.3的15Q11.2的2.6·MB拷贝数增益,对应于涉及近15Q的小超值标记染色体。我们的调查结果增加了15Q11Q13重复和15Q26终端删除的先前发布结果。基于我们的研究,我们可以支持上一份报告的关于SEL,SNRPA1和PCSK6基因在心脏形态发展中的作用的有限信息。另一方面,我们发现我们患者的拷贝数量丧失并不涉及通常与生长延迟(短地和重量减少)相关的IGF1R基因。我们假设与IGF1R基因远端的15Q26基因组区域的单倍细可能与生长紊乱有关;然而,环染色体15本身的存在也可能对生长延迟负责。

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