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Severe spinal cord hypoplasia due to a novel ATAD3A compound heterozygous deletion

Biallelic deletions extending into the ATPase family AAA-domain containing protein 3A (ATAD3A) gene lead to infantile lethality with severe pontocerebellar hypoplasia (PCH). However, only 12 such cases have been reported worldwide to date, and the genotype–phenotype correlations are not well underst...

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Autores principales: Ebihara, Tomohiro, Nagatomo, Taro, Sugiyama, Yohei, Tsuruoka, Tomoko, Osone, Yoshiteru, Shimura, Masaru, Tajika, Makiko, Ichimoto, Keiko, Naruke, Yuki, Akiyama, Nana, Lim, Sze Chern, Yatsuka, Yukiko, Nitta, Kazuhiro R., Kishita, Yoshihito, Fushimi, Takuya, Okazaki, Atsuko, Ohtake, Akira, Okazaki, Yasushi, Murayama, Kei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9428837/
https://www.ncbi.nlm.nih.gov/pubmed/36061954
http://dx.doi.org/10.1016/j.ymgmr.2022.100912
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author Ebihara, Tomohiro
Nagatomo, Taro
Sugiyama, Yohei
Tsuruoka, Tomoko
Osone, Yoshiteru
Shimura, Masaru
Tajika, Makiko
Ichimoto, Keiko
Naruke, Yuki
Akiyama, Nana
Lim, Sze Chern
Yatsuka, Yukiko
Nitta, Kazuhiro R.
Kishita, Yoshihito
Fushimi, Takuya
Okazaki, Atsuko
Ohtake, Akira
Okazaki, Yasushi
Murayama, Kei
author_facet Ebihara, Tomohiro
Nagatomo, Taro
Sugiyama, Yohei
Tsuruoka, Tomoko
Osone, Yoshiteru
Shimura, Masaru
Tajika, Makiko
Ichimoto, Keiko
Naruke, Yuki
Akiyama, Nana
Lim, Sze Chern
Yatsuka, Yukiko
Nitta, Kazuhiro R.
Kishita, Yoshihito
Fushimi, Takuya
Okazaki, Atsuko
Ohtake, Akira
Okazaki, Yasushi
Murayama, Kei
author_sort Ebihara, Tomohiro
collection PubMed
description Biallelic deletions extending into the ATPase family AAA-domain containing protein 3A (ATAD3A) gene lead to infantile lethality with severe pontocerebellar hypoplasia (PCH). However, only 12 such cases have been reported worldwide to date, and the genotype–phenotype correlations are not well understood. We describe cases associated with the same novel biallelic deletions of the ATAD3A and ATAD3B/3A regions in Japanese siblings with severe spinal cord hypoplasia and multiple malformations, including PCH, leading to neonatal death. The ATAD3A protein is essential for normal interaction between mitochondria and endoplasmic reticulum and is important for mitochondrial biosynthesis. The cases were evaluated using whole-genome sequencing for genetic diagnosis of mitochondrial disease. Spinal cord lesions associated with biallelic compound heterozygous deletion extending into the ATAD3A gene have not been reported. In addition, the ATAD3A deletion was 19 base pairs long, which is short compared with those reported previously. This deletion introduced a frameshift, resulting in a premature termination codon, and was expected to be a null allele. The pathological findings of the atrophic spinal cord showed gliosis and tissue destruction of the gray and white matter. We describe spinal cord lesions as a new central nervous system phenotype associated with a biallelic compound heterozygous deletion extending into the ATAD3A gene. Biallelic ATAD3A deletions should be considered in cases of mitochondrial disease with spinal cord hypoplasia and PCH.
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spelling pubmed-94288372022-09-01 Severe spinal cord hypoplasia due to a novel ATAD3A compound heterozygous deletion Ebihara, Tomohiro Nagatomo, Taro Sugiyama, Yohei Tsuruoka, Tomoko Osone, Yoshiteru Shimura, Masaru Tajika, Makiko Ichimoto, Keiko Naruke, Yuki Akiyama, Nana Lim, Sze Chern Yatsuka, Yukiko Nitta, Kazuhiro R. Kishita, Yoshihito Fushimi, Takuya Okazaki, Atsuko Ohtake, Akira Okazaki, Yasushi Murayama, Kei Mol Genet Metab Rep Case Report Biallelic deletions extending into the ATPase family AAA-domain containing protein 3A (ATAD3A) gene lead to infantile lethality with severe pontocerebellar hypoplasia (PCH). However, only 12 such cases have been reported worldwide to date, and the genotype–phenotype correlations are not well understood. We describe cases associated with the same novel biallelic deletions of the ATAD3A and ATAD3B/3A regions in Japanese siblings with severe spinal cord hypoplasia and multiple malformations, including PCH, leading to neonatal death. The ATAD3A protein is essential for normal interaction between mitochondria and endoplasmic reticulum and is important for mitochondrial biosynthesis. The cases were evaluated using whole-genome sequencing for genetic diagnosis of mitochondrial disease. Spinal cord lesions associated with biallelic compound heterozygous deletion extending into the ATAD3A gene have not been reported. In addition, the ATAD3A deletion was 19 base pairs long, which is short compared with those reported previously. This deletion introduced a frameshift, resulting in a premature termination codon, and was expected to be a null allele. The pathological findings of the atrophic spinal cord showed gliosis and tissue destruction of the gray and white matter. We describe spinal cord lesions as a new central nervous system phenotype associated with a biallelic compound heterozygous deletion extending into the ATAD3A gene. Biallelic ATAD3A deletions should be considered in cases of mitochondrial disease with spinal cord hypoplasia and PCH. Elsevier 2022-08-24 /pmc/articles/PMC9428837/ /pubmed/36061954 http://dx.doi.org/10.1016/j.ymgmr.2022.100912 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Case Report
Ebihara, Tomohiro
Nagatomo, Taro
Sugiyama, Yohei
Tsuruoka, Tomoko
Osone, Yoshiteru
Shimura, Masaru
Tajika, Makiko
Ichimoto, Keiko
Naruke, Yuki
Akiyama, Nana
Lim, Sze Chern
Yatsuka, Yukiko
Nitta, Kazuhiro R.
Kishita, Yoshihito
Fushimi, Takuya
Okazaki, Atsuko
Ohtake, Akira
Okazaki, Yasushi
Murayama, Kei
Severe spinal cord hypoplasia due to a novel ATAD3A compound heterozygous deletion
title Severe spinal cord hypoplasia due to a novel ATAD3A compound heterozygous deletion
title_full Severe spinal cord hypoplasia due to a novel ATAD3A compound heterozygous deletion
title_fullStr Severe spinal cord hypoplasia due to a novel ATAD3A compound heterozygous deletion
title_full_unstemmed Severe spinal cord hypoplasia due to a novel ATAD3A compound heterozygous deletion
title_short Severe spinal cord hypoplasia due to a novel ATAD3A compound heterozygous deletion
title_sort severe spinal cord hypoplasia due to a novel atad3a compound heterozygous deletion
topic Case Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9428837/
https://www.ncbi.nlm.nih.gov/pubmed/36061954
http://dx.doi.org/10.1016/j.ymgmr.2022.100912
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