Hiraide Takuya, Masunaga Yohei, Honda Akira, Kato Fumiko, Fukuda Tokiko, Fukami Maki, Nakashima Mitsuko, Saitsu Hirotomo, Ogata Tsutomu
Department of Pediatrics, Hamamatsu University School of Medicine, Hamamatsu, Japan.
Department of Biochemistry, Hamamatsu University School of Medicine, Hamamatsu, Japan.
J Hum Genet. 2022 May;67(5):303-306. doi: 10.1038/s10038-021-01000-1. Epub 2022 Jan 9.
X-linked dominant chondrodysplasia punctata (CDPX2) is a rare congenital disorder caused by pathogenic variants in EBP on Xp11.23. We encountered a girl and her mother with CDPX2-compatible phenotypes including punctiform calcification in the neonatal period of the girl, and asymmetric limb shortening and ichthyosis following the Blaschko lines in both subjects. Although Sanger direct sequencing failed to reveal a disease-causing variant in EBP, whole genome sequencing (WGS) followed by Manta analysis identified a ~ 4.5 kb insertion at EBP exon 2 of both subjects. The insertion was associated with the hallmarks of retrotransposition such as an antisense poly(A) tail, a target site duplication, and a consensus endonuclease cleavage site, and the inserted sequence harbored full-length SVA_F1 element with 5'- and 3'-transductions containing the Alu sequence. The results imply the relevance of retrotransposition to the human genetic diseases and the usefulness of WGS in the identification of retrotransposition.
X连锁显性点状软骨发育不良(CDPX2)是一种罕见的先天性疾病,由位于Xp11.23的EBP基因的致病变异引起。我们遇到了一名患有CDPX2兼容表型的女孩及其母亲,女孩在新生儿期出现点状钙化,两人均有沿Blaschko线分布的不对称肢体缩短和鱼鳞病。尽管桑格直接测序未能在EBP基因中发现致病变异,但全基因组测序(WGS)随后进行的Manta分析在两名受试者的EBP外显子2中鉴定出一个约4.5 kb的插入。该插入与逆转录转座的特征相关,如反义聚腺苷酸尾、靶位点重复和共有内切酶切割位点,插入序列包含全长SVA_F1元件,其5'和3'端含有Alu序列的转导。这些结果表明逆转录转座与人类遗传疾病的相关性以及WGS在鉴定逆转录转座中的实用性。