Katoh Kimiko, Aiba Kaori, Fukushi Daisuke, Yoshimura Jun, Suzuki Yasuyo, Mitsui Jun, Morishita Shinichi, Tuji Shoji, Yamada Kenichiro, Wakamatsu Nobuaki
Department of Genetics, Institute for Developmental Research, Aichi Developmental Disability Center, Kasugai, Aichi, Japan.
Department of Pediatrics, Toyohashi Municipal Hospital, Toyohashi, Aichi, Japan.
Hum Mutat. 2020 Aug;41(8):1447-1460. doi: 10.1002/humu.24058. Epub 2020 Jun 19.
A heterozygous deletion at Xq27.3q28 including FMR1, AFF2, and IDS causing intellectual disability and characteristic facial features is very rare in females, with only 10 patients having been reported. Here, we examined two female patients with different clinical features harboring the Xq27.3q28 deletion and determined the chromosomal breakpoints. Moreover, we assessed the X chromosome inactivation (XCI) in peripheral blood from both patients. Both patients had an almost overlapping deletion at Xq27.3q28, however, the more severe patient (Patient 1) showed skewed XCI of the normal X chromosome (79:21) whereas the milder patient (Patient 2) showed random XCI. Therefore, deletion at Xq27.3q28 critically affected brain development, and the ratio of XCI of the normal X chromosome greatly affected the clinical characteristics of patients with deletion at Xq27.3q28. As the chromosomal breakpoints were determined, we analyzed a change in chromatin domains termed topologically associated domains (TADs) using published Hi-C data on the Xq27.3q28 region, and found that only patient 1 had a possibility of a drastic change in TADs. The altered chromatin topologies on the Xq27.3q28 region might affect the clinical features of patient 1 by changing the expression of genes just outside the deletion and/or the XCI establishment during embryogenesis resulting in skewed XCI.
Xq27.3q28处的杂合缺失,包括FMR1、AFF2和IDS,导致智力残疾和特征性面部特征,在女性中非常罕见,仅有10例患者被报道。在此,我们检查了两名具有不同临床特征且携带Xq27.3q28缺失的女性患者,并确定了染色体断点。此外,我们评估了两名患者外周血中的X染色体失活(XCI)情况。两名患者在Xq27.3q28处几乎存在重叠缺失,然而,病情较重的患者(患者1)正常X染色体的XCI呈现偏态(79:21),而病情较轻的患者(患者2)呈现随机XCI。因此,Xq27.3q28处的缺失严重影响大脑发育,正常X染色体的XCI比例极大地影响了Xq27.3q28缺失患者的临床特征。由于确定了染色体断点,我们利用已发表的关于Xq27.3q28区域的Hi-C数据,分析了称为拓扑相关结构域(TADs)的染色质结构域的变化,发现只有患者1有可能出现TADs的剧烈变化。Xq27.3q28区域染色质拓扑结构的改变可能通过改变缺失区域外基因的表达和/或胚胎发育过程中XCI的建立导致偏态XCI,从而影响患者1的临床特征。