Long-read sequencing identifies an SVA_D retrotransposon insertion deep within the intron of ATP7A as a novel cause of occipital horn syndrome.

IF 3.5 2区 医学 Q2 GENETICS & HEREDITY
Naoko Yano, Pin Fee Chong, Kenji K Kojima, Tomoichiro Miyoshi, Ahmad Luqman-Fatah, Yu Kimura, Kengo Kora, Taisei Kayaki, Kanako Maizuru, Takahiro Hayashi, Atsushi Yokoyama, Masahiko Ajiro, Masatoshi Hagiwara, Teruyuki Kondo, Ryutaro Kira, Junko Takita, Takeshi Yoshida
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引用次数: 0

Abstract

Background: SINE-VNTR-Alu (SVA) retrotransposons move from one genomic location to another in a 'copy-and-paste' manner. They continue to move actively and cause monogenic diseases through various mechanisms. Currently, disease-causing SVA retrotransposons are classified into human-specific young SVA_E or SVA_F subfamilies. In this study, we identified an evolutionarily old SVA_D retrotransposon as a novel cause of occipital horn syndrome (OHS). OHS is an X-linked, copper metabolism disorder caused by dysfunction of the copper transporter, ATP7A.

Methods: We investigated a 16-year-old boy with OHS whose pathogenic variant could not be detected via routine molecular genetic analyses.

Results: A 2.8 kb insertion was detected deep within the intron of the patient's ATP7A gene. This insertion caused aberrant mRNA splicing activated by a new donor splice site located within it. Long-read circular consensus sequencing enabled us to accurately read the entire insertion sequence, which contained highly repetitive and GC-rich segments. Consequently, the insertion was identified as an SVA_D retrotransposon. Antisense oligonucleotides (AOs) targeting the new splice site restored the expression of normal transcripts and functional ATP7A proteins. AO treatment alleviated excessive accumulation of copper in patient fibroblasts in a dose-dependent manner. Pedigree analysis revealed that the retrotransposon had moved into the OHS-causing position two generations ago.

Conclusion: This is the first report of a human monogenic disease caused by the SVA_D retrotransposon. The fact that the evolutionarily old SVA_D is still actively transposed, leading to increased copy numbers may make a notable impact on rare genetic disease research.

长读测序确定了 ATP7A 内含子深处的 SVA_D 逆转录质子插入是导致枕角综合征的新病因。
背景:SINE-VNTR-Alu(SVA)反转座子以 "复制粘贴 "的方式从一个基因组位置移动到另一个基因组位置。它们继续积极移动,并通过各种机制导致单基因疾病。目前,致病的 SVA 逆转录座子被分为人类特异的年轻 SVA_E 或 SVA_F 亚家族。在这项研究中,我们发现了一个进化古老的SVA_D逆转座子,它是导致枕角综合征(OHS)的新病因。枕角综合征是一种 X 连锁铜代谢紊乱,由铜转运体 ATP7A 功能障碍引起:我们对一名患有 OHS 的 16 岁男孩进行了调查,其致病变体无法通过常规分子遗传分析检测出来:结果:在患者的 ATP7A 基因内含子深处发现了一个 2.8 kb 的插入片段。该插入物导致 mRNA 剪接异常,由位于其中的一个新的供体剪接位点激活。长读取循环共识测序使我们能够准确读取整个插入序列,其中包含高度重复和富含 GC 的片段。因此,该插入物被鉴定为 SVA_D 逆转录转座子。针对新剪接位点的反义寡核苷酸(AO)恢复了正常转录本和功能性 ATP7A 蛋白的表达。反义寡核苷酸治疗以剂量依赖的方式缓解了铜在患者成纤维细胞中的过度积累。血统分析表明,逆转录质子在两代人之前就已经转移到了导致OHS的位置:这是首次报道由 SVA_D 逆转录质子引起的人类单基因病。SVA_D逆转录质子在进化过程中仍然活跃地进行转座,导致拷贝数增加,这可能会对罕见遗传病的研究产生显著影响。
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来源期刊
Journal of Medical Genetics
Journal of Medical Genetics 医学-遗传学
CiteScore
7.60
自引率
2.50%
发文量
92
审稿时长
4-8 weeks
期刊介绍: Journal of Medical Genetics is a leading international peer-reviewed journal covering original research in human genetics, including reviews of and opinion on the latest developments. Articles cover the molecular basis of human disease including germline cancer genetics, clinical manifestations of genetic disorders, applications of molecular genetics to medical practice and the systematic evaluation of such applications worldwide.
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