Carter J, Brittain H, Morrogh D, Lench N, Waters J J
NE Thames Regional Genetics Service, Great Ormond Street Hospital for Children NHS Foundation Trust, London, UK.
Congenica Ltd., Wellcome Trust Campus, Hinxton, Cambridge CB10 15A, UK.
Case Rep Genet. 2017;2017:4894515. doi: 10.1155/2017/4894515. Epub 2017 Jul 27.
Interstitial deletions of 4q are rarely reported, vary in size, and have limited genotype-phenotype correlations. Here, genome-wide array CGH analysis identified a 21.6 Mb region of copy number loss at 4q12-q21.1 in a patient diagnosed with dysmorphism, linear skin pigmentation, and hepatomegaly. An additional small ring chromosome was detected in 5/30 cells examined via G-banding. Confirmation of the origin of the ring chromosome was obtained by FISH analysis which identified that the ring chromosome contained material from the deleted region of chromosome 4 and was therefore complementary to the 21.6 Mb deletion. Further microarray studies in the proband using a different microarray platform showed no evidence of mosaicism. This case highlights the importance of an integrated approach to cytogenetic analysis and demonstrates the value of G-banding for detecting mosaicism, as current microarray platforms are unable to detect low level mosaics.
4q间质缺失鲜有报道,大小各异,基因型与表型的相关性有限。在此,全基因组阵列比较基因组杂交分析在一名被诊断为畸形、线状皮肤色素沉着和肝肿大的患者中,确定了4q12 - q21.1处存在21.6 Mb的拷贝数缺失区域。通过G显带检查的30个细胞中有5个检测到一条额外的小环状染色体。通过荧光原位杂交分析确认了环状染色体的来源,该分析确定环状染色体包含来自4号染色体缺失区域的物质,因此与21.6 Mb的缺失互补。使用不同微阵列平台对先证者进行的进一步微阵列研究未发现嵌合体的证据。该病例突出了细胞遗传学分析综合方法的重要性,并证明了G显带在检测嵌合体方面的价值,因为目前的微阵列平台无法检测低水平嵌合体。