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Genome sequencing provides high diagnostic yield and new etiological insights for intellectual disability and developmental delay
by
Mehr, Tammar Fixler
, Mizuguchi, Takeshi
, Koshimizu, Eriko
, Ichikawa, Kazushi
, Kim, Kiyohiro
, Takizawa, Marina
, Kuki, Ichiro
, Fukuoka, Masataka
, Cho, Kazutoshi
, Yokochi, Kenji
, Miyatake, Satoko
, Kawai, Yosuke
, Sugai, Kenji
, Osaka, Hitoshi
, Miura, Masaki
, Itai, Toshiyuki
, Hirasawa, Kyoko
, Saito, Yoshihiko
, Matsumoto, Naomichi
, Tokunaga, Katsushi
, Iwabuchi, Emi
, Utsuno, Yasuhiro
, Shirai, Kentaro
, Lev, Dorit
, Nishimura, Naoto
, Sasaki, Masayuki
, Omae, Yosuke
, Tohyama, Jun
, Kameyama, Shinichi
, Hamanaka, Kohei
, Saida, Ken
, Fukuda, Hiromi
, Inoue, Yuta
, Kato, Mitsuhiro
, Iwama, Kazuhiro
, Daida, Atsuro
, Kim, Chong Ae
, Yamamoto, Toshiyuki
, Ohori, Sachiko
, Ikeda, Takahiro
, Yanagishita, Tomoe
, Watanabe, Yoshihiro
, Goto, Tomohide
, Hasegawa, Yuiko
, Yoshida, Masaki
, Sakamoto, Masamune
, Yuge, Kotaro
, Takanashi, Jun-ichi
, Tachi, Nobutada
, Shimoda, Konomi
, Izumi, Yuishin
, Misawa, Kazuharu
, Tsuchida, Naomi
, Okamoto, Nobuhiko
, Hayashi, Yukina
, Liang, Qiaowei
, Shiohama, Tadashi
, Yokoyama, Haruna
, Ueda, Yuki
, Mori, Tatsuo
, Fattal-Valevski, Aviva
, Fu, Li
, Fujita, Atsushi
, Uchiyama, Yuri
, Ishiyama, Akihiko
, Otsuka, Kosuke
, Seyama, Rie
in
631/208/2489/1381/1853
/ 631/208/2489/144
/ 631/208/737/2007
/ 692/308/2056
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedicine
/ Chromosome rearrangements
/ Epilepsy
/ Gene Function
/ Gene mapping
/ Gene Therapy
/ Genes
/ Genetic disorders
/ Genetic diversity
/ Genomes
/ Human Genetics
/ Intellectual disabilities
/ Internal Medicine
/ Rare diseases
/ Regulatory sequences
/ Transcription initiation
/ Whole genome sequencing
2025
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Genome sequencing provides high diagnostic yield and new etiological insights for intellectual disability and developmental delay
by
Mehr, Tammar Fixler
, Mizuguchi, Takeshi
, Koshimizu, Eriko
, Ichikawa, Kazushi
, Kim, Kiyohiro
, Takizawa, Marina
, Kuki, Ichiro
, Fukuoka, Masataka
, Cho, Kazutoshi
, Yokochi, Kenji
, Miyatake, Satoko
, Kawai, Yosuke
, Sugai, Kenji
, Osaka, Hitoshi
, Miura, Masaki
, Itai, Toshiyuki
, Hirasawa, Kyoko
, Saito, Yoshihiko
, Matsumoto, Naomichi
, Tokunaga, Katsushi
, Iwabuchi, Emi
, Utsuno, Yasuhiro
, Shirai, Kentaro
, Lev, Dorit
, Nishimura, Naoto
, Sasaki, Masayuki
, Omae, Yosuke
, Tohyama, Jun
, Kameyama, Shinichi
, Hamanaka, Kohei
, Saida, Ken
, Fukuda, Hiromi
, Inoue, Yuta
, Kato, Mitsuhiro
, Iwama, Kazuhiro
, Daida, Atsuro
, Kim, Chong Ae
, Yamamoto, Toshiyuki
, Ohori, Sachiko
, Ikeda, Takahiro
, Yanagishita, Tomoe
, Watanabe, Yoshihiro
, Goto, Tomohide
, Hasegawa, Yuiko
, Yoshida, Masaki
, Sakamoto, Masamune
, Yuge, Kotaro
, Takanashi, Jun-ichi
, Tachi, Nobutada
, Shimoda, Konomi
, Izumi, Yuishin
, Misawa, Kazuharu
, Tsuchida, Naomi
, Okamoto, Nobuhiko
, Hayashi, Yukina
, Liang, Qiaowei
, Shiohama, Tadashi
, Yokoyama, Haruna
, Ueda, Yuki
, Mori, Tatsuo
, Fattal-Valevski, Aviva
, Fu, Li
, Fujita, Atsushi
, Uchiyama, Yuri
, Ishiyama, Akihiko
, Otsuka, Kosuke
, Seyama, Rie
in
631/208/2489/1381/1853
/ 631/208/2489/144
/ 631/208/737/2007
/ 692/308/2056
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedicine
/ Chromosome rearrangements
/ Epilepsy
/ Gene Function
/ Gene mapping
/ Gene Therapy
/ Genes
/ Genetic disorders
/ Genetic diversity
/ Genomes
/ Human Genetics
/ Intellectual disabilities
/ Internal Medicine
/ Rare diseases
/ Regulatory sequences
/ Transcription initiation
/ Whole genome sequencing
2025
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Do you wish to request the book?
Genome sequencing provides high diagnostic yield and new etiological insights for intellectual disability and developmental delay
by
Mehr, Tammar Fixler
, Mizuguchi, Takeshi
, Koshimizu, Eriko
, Ichikawa, Kazushi
, Kim, Kiyohiro
, Takizawa, Marina
, Kuki, Ichiro
, Fukuoka, Masataka
, Cho, Kazutoshi
, Yokochi, Kenji
, Miyatake, Satoko
, Kawai, Yosuke
, Sugai, Kenji
, Osaka, Hitoshi
, Miura, Masaki
, Itai, Toshiyuki
, Hirasawa, Kyoko
, Saito, Yoshihiko
, Matsumoto, Naomichi
, Tokunaga, Katsushi
, Iwabuchi, Emi
, Utsuno, Yasuhiro
, Shirai, Kentaro
, Lev, Dorit
, Nishimura, Naoto
, Sasaki, Masayuki
, Omae, Yosuke
, Tohyama, Jun
, Kameyama, Shinichi
, Hamanaka, Kohei
, Saida, Ken
, Fukuda, Hiromi
, Inoue, Yuta
, Kato, Mitsuhiro
, Iwama, Kazuhiro
, Daida, Atsuro
, Kim, Chong Ae
, Yamamoto, Toshiyuki
, Ohori, Sachiko
, Ikeda, Takahiro
, Yanagishita, Tomoe
, Watanabe, Yoshihiro
, Goto, Tomohide
, Hasegawa, Yuiko
, Yoshida, Masaki
, Sakamoto, Masamune
, Yuge, Kotaro
, Takanashi, Jun-ichi
, Tachi, Nobutada
, Shimoda, Konomi
, Izumi, Yuishin
, Misawa, Kazuharu
, Tsuchida, Naomi
, Okamoto, Nobuhiko
, Hayashi, Yukina
, Liang, Qiaowei
, Shiohama, Tadashi
, Yokoyama, Haruna
, Ueda, Yuki
, Mori, Tatsuo
, Fattal-Valevski, Aviva
, Fu, Li
, Fujita, Atsushi
, Uchiyama, Yuri
, Ishiyama, Akihiko
, Otsuka, Kosuke
, Seyama, Rie
in
631/208/2489/1381/1853
/ 631/208/2489/144
/ 631/208/737/2007
/ 692/308/2056
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedicine
/ Chromosome rearrangements
/ Epilepsy
/ Gene Function
/ Gene mapping
/ Gene Therapy
/ Genes
/ Genetic disorders
/ Genetic diversity
/ Genomes
/ Human Genetics
/ Intellectual disabilities
/ Internal Medicine
/ Rare diseases
/ Regulatory sequences
/ Transcription initiation
/ Whole genome sequencing
2025
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Genome sequencing provides high diagnostic yield and new etiological insights for intellectual disability and developmental delay
Journal Article
Genome sequencing provides high diagnostic yield and new etiological insights for intellectual disability and developmental delay
2025
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Overview
Short-read genome sequencing (GS) is a powerful technique for investigating the genetic etiologies of rare diseases, capturing diverse genetic variations that are challenging to approach with exome sequencing (ES). We performed GS on 260 families with intellectual disability/developmental delay. GS detected potentially disease-related variants in 55 of the 260 families, with structural resolution by long-read sequencing or optical genome mapping, and functional assessment by RNA sequencing. Excluding 31 theoretically ES-resolvable cases, GS yielded likely pathogenic variants in 17 of 229 as well as variants of unknown significance in 7 of 229, totaling 10.5%. These variants implicated several new etiological mechanisms: a microduplication syndrome involving
ATP6V0C
; disturbed interactions of
TBL1XR1
and
NR2F1
with putative cis-regulatory elements by chromosomal rearrangements; and a CCG repeat expansion near the
CHD3
transcription start site. This study highlights the critical role of GS in clinical diagnostics and its potential to advance understanding of genetic disorders.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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