Comprehensive analysis of coding variants highlights genetic complexity in developmental and epileptic encephalopathy

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作者
Atsushi Takata
Mitsuko Nakashima
Hirotomo Saitsu
Takeshi Mizuguchi
Satomi Mitsuhashi
Yukitoshi Takahashi
Nobuhiko Okamoto
Hitoshi Osaka
Kazuyuki Nakamura
Jun Tohyama
Kazuhiro Haginoya
Saoko Takeshita
Ichiro Kuki
Tohru Okanishi
Tomohide Goto
Masayuki Sasaki
Yasunari Sakai
Noriko Miyake
Satoko Miyatake
Naomi Tsuchida
Kazuhiro Iwama
Gaku Minase
Futoshi Sekiguchi
Atsushi Fujita
Eri Imagawa
Eriko Koshimizu
Yuri Uchiyama
Kohei Hamanaka
Chihiro Ohba
Toshiyuki Itai
Hiromi Aoi
Ken Saida
Tomohiro Sakaguchi
Kouhei Den
Rina Takahashi
Hiroko Ikeda
Tokito Yamaguchi
Kazuki Tsukamoto
Shinsaku Yoshitomi
Taikan Oboshi
Katsumi Imai
Tomokazu Kimizu
Yu Kobayashi
Masaya Kubota
Hirofumi Kashii
Shimpei Baba
Mizue Iai
Ryutaro Kira
Munetsugu Hara
Masayasu Ohta
机构
[1] Yokohama City University Graduate School of Medicine,Department of Human Genetics
[2] Hamamatsu University School of Medicine,Department of Biochemistry
[3] NHO Shizuoka Institute of Epilepsy and Neurological Disorders,National Epilepsy Center
[4] Osaka Women’s and Children’s Hospital,Department of Medical Genetics
[5] Jichi Medical University,Department of Pediatrics
[6] Yamagata University Faculty of Medicine,Department of Pediatrics
[7] NHO Nishiniigata Chuo Hospital,Department of Child Neurology
[8] Miyagi Children’s Hospital,Department of Pediatric Neurology
[9] Yokohama City University Medical Center,Department of Pediatrics
[10] Osaka City General Hospital,Department of Pediatric Neurology
[11] Seirei Hamamatsu General Hospital,Department of Child Neurology, Comprehensive Epilepsy Center
[12] Kanagawa Children’s Medical Center,Division of Neurology
[13] National Center of Neurology and Psychiatry,Department of Child Neurology
[14] Kyushu University,Department of Pediatrics, Graduate School of Medical Sciences
[15] Osaka Women’s and Children’s Hospital,Department of Pediatric Neurology
[16] National Center for Child Health and Development,Division of Neurology
[17] Fukuoka Children’s Hospital,Department of Pediatric Neurology
[18] Kurume University School of Medicine,Department of Pediatrics and Child Health
[19] Aiseikai Memorial Ibaraki Welfare Medical Center,Department of Neuropediatrics
[20] Tokyo Metropolitan Neurological Hospital,Department of Neuropediatrics
[21] Tokyo-kita Medical Center,Department of Pediatrics
[22] Tokyo Women’s Medical University Yachiyo Medical Center,Department of Pediatrics
[23] Shiga University of Medical Science,Department of Pediatrics
[24] Setatsukinowacho,Department of Pediatric Neurology
[25] Seirei-Mikatahara General Hospital,Department of Pediatrics, School of Medicine
[26] University of Occupational and Environmental Health,Division of Neurology
[27] Kutakyushu Municipal Yahata Hospital Pediatric Emergency Center,Department of Pediatrics
[28] Hokkaido Medical Center for Child Health and Rehabilitation,Department of Pediatrics
[29] Nagano Children’s Hospital,Department of Pediatrics, Graduate School of Medicine
[30] Toyohashi Municipal Hospital,Department of Neurology
[31] National Defense Medical College,Department of Pediatrics
[32] Osaka University,undefined
[33] Gunma Children’s Medical Center,undefined
[34] Showa University School of Medicine,undefined
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摘要
Although there are many known Mendelian genes linked to epileptic or developmental and epileptic encephalopathy (EE/DEE), its genetic architecture is not fully explained. Here, we address this incompleteness by analyzing exomes of 743 EE/DEE cases and 2366 controls. We observe that damaging ultra-rare variants (dURVs) unique to an individual are significantly overrepresented in EE/DEE, both in known EE/DEE genes and the other non-EE/DEE genes. Importantly, enrichment of dURVs in non-EE/DEE genes is significant, even in the subset of cases with diagnostic dURVs (P = 0.000215), suggesting oligogenic contribution of non-EE/DEE gene dURVs. Gene-based analysis identifies exome-wide significant (P = 2.04 × 10−6) enrichment of damaging de novo mutations in NF1, a gene primarily linked to neurofibromatosis, in infantile spasm. Together with accumulating evidence for roles of oligogenic or modifier variants in severe neurodevelopmental disorders, our results highlight genetic complexity in EE/DEE, and indicate that EE/DEE is not an aggregate of simple Mendelian disorders.
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