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Genetic insights into ossification of the posterior longitudinal ligament of the spine

Ossification of the posterior longitudinal ligament of the spine (OPLL) is an intractable disease leading to severe neurological deficits. Its etiology and pathogenesis are primarily unknown. The relationship between OPLL and comorbidities, especially type 2 diabetes (T2D) and high body mass index (...

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Autores principales: Koike, Yoshinao, Takahata, Masahiko, Nakajima, Masahiro, Otomo, Nao, Suetsugu, Hiroyuki, Liu, Xiaoxi, Endo, Tsutomu, Imagama, Shiro, Kobayashi, Kazuyoshi, Kaito, Takashi, Kato, Satoshi, Kawaguchi, Yoshiharu, Kanayama, Masahiro, Sakai, Hiroaki, Tsuji, Takashi, Miyamoto, Takeshi, Inose, Hiroyuki, Yoshii, Toshitaka, Kashii, Masafumi, Nakashima, Hiroaki, Ando, Kei, Taniguchi, Yuki, Takeuchi, Kazuhiro, Ito, Shuji, Tomizuka, Kohei, Hikino, Keiko, Iwasaki, Yusuke, Kamatani, Yoichiro, Maeda, Shingo, Nakajima, Hideaki, Mori, Kanji, Seichi, Atsushi, Fujibayashi, Shunsuke, Kanchiku, Tsukasa, Watanabe, Kei, Tanaka, Toshihiro, Kida, Kazunobu, Kobayashi, Sho, Takahashi, Masahito, Yamada, Kei, Takuwa, Hiroshi, Lu, Hsing-Fang, Niida, Shumpei, Ozaki, Kouichi, Momozawa, Yukihide, Yamazaki, Masashi, Okawa, Atsushi, Matsumoto, Morio, Iwasaki, Norimasa, Terao, Chikashi, Ikegawa, Shiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10353864/
https://www.ncbi.nlm.nih.gov/pubmed/37461309
http://dx.doi.org/10.7554/eLife.86514
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author Koike, Yoshinao
Takahata, Masahiko
Nakajima, Masahiro
Otomo, Nao
Suetsugu, Hiroyuki
Liu, Xiaoxi
Endo, Tsutomu
Imagama, Shiro
Kobayashi, Kazuyoshi
Kaito, Takashi
Kato, Satoshi
Kawaguchi, Yoshiharu
Kanayama, Masahiro
Sakai, Hiroaki
Tsuji, Takashi
Miyamoto, Takeshi
Inose, Hiroyuki
Yoshii, Toshitaka
Kashii, Masafumi
Nakashima, Hiroaki
Ando, Kei
Taniguchi, Yuki
Takeuchi, Kazuhiro
Ito, Shuji
Tomizuka, Kohei
Hikino, Keiko
Iwasaki, Yusuke
Kamatani, Yoichiro
Maeda, Shingo
Nakajima, Hideaki
Mori, Kanji
Seichi, Atsushi
Fujibayashi, Shunsuke
Kanchiku, Tsukasa
Watanabe, Kei
Tanaka, Toshihiro
Kida, Kazunobu
Kobayashi, Sho
Takahashi, Masahito
Yamada, Kei
Takuwa, Hiroshi
Lu, Hsing-Fang
Niida, Shumpei
Ozaki, Kouichi
Momozawa, Yukihide
Yamazaki, Masashi
Okawa, Atsushi
Matsumoto, Morio
Iwasaki, Norimasa
Terao, Chikashi
Ikegawa, Shiro
author_facet Koike, Yoshinao
Takahata, Masahiko
Nakajima, Masahiro
Otomo, Nao
Suetsugu, Hiroyuki
Liu, Xiaoxi
Endo, Tsutomu
Imagama, Shiro
Kobayashi, Kazuyoshi
Kaito, Takashi
Kato, Satoshi
Kawaguchi, Yoshiharu
Kanayama, Masahiro
Sakai, Hiroaki
Tsuji, Takashi
Miyamoto, Takeshi
Inose, Hiroyuki
Yoshii, Toshitaka
Kashii, Masafumi
Nakashima, Hiroaki
Ando, Kei
Taniguchi, Yuki
Takeuchi, Kazuhiro
Ito, Shuji
Tomizuka, Kohei
Hikino, Keiko
Iwasaki, Yusuke
Kamatani, Yoichiro
Maeda, Shingo
Nakajima, Hideaki
Mori, Kanji
Seichi, Atsushi
Fujibayashi, Shunsuke
Kanchiku, Tsukasa
Watanabe, Kei
Tanaka, Toshihiro
Kida, Kazunobu
Kobayashi, Sho
Takahashi, Masahito
Yamada, Kei
Takuwa, Hiroshi
Lu, Hsing-Fang
Niida, Shumpei
Ozaki, Kouichi
Momozawa, Yukihide
Yamazaki, Masashi
Okawa, Atsushi
Matsumoto, Morio
Iwasaki, Norimasa
Terao, Chikashi
Ikegawa, Shiro
author_sort Koike, Yoshinao
collection PubMed
description Ossification of the posterior longitudinal ligament of the spine (OPLL) is an intractable disease leading to severe neurological deficits. Its etiology and pathogenesis are primarily unknown. The relationship between OPLL and comorbidities, especially type 2 diabetes (T2D) and high body mass index (BMI), has been the focus of attention; however, no trait has been proven to have a causal relationship. We conducted a meta-analysis of genome-wide association studies (GWASs) using 22,016 Japanese individuals and identified 14 significant loci, 8 of which were previously unreported. We then conducted a gene-based association analysis and a transcriptome-wide Mendelian randomization approach and identified three candidate genes for each. Partitioning heritability enrichment analyses observed significant enrichment of the polygenic signals in the active enhancers of the connective/bone cell group, especially H3K27ac in chondrogenic differentiation cells, as well as the immune/hematopoietic cell group. Single-cell RNA sequencing of Achilles tendon cells from a mouse Achilles tendon ossification model confirmed the expression of genes in GWAS and post-GWAS analyses in mesenchymal and immune cells. Genetic correlations with 96 complex traits showed positive correlations with T2D and BMI and a negative correlation with cerebral aneurysm. Mendelian randomization analysis demonstrated a significant causal effect of increased BMI and high bone mineral density on OPLL. We evaluated the clinical images in detail and classified OPLL into cervical, thoracic, and the other types. GWAS subanalyses identified subtype-specific signals. A polygenic risk score for BMI demonstrated that the effect of BMI was particularly strong in thoracic OPLL. Our study provides genetic insight into the etiology and pathogenesis of OPLL and is expected to serve as a basis for future treatment development.
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spelling pubmed-103538642023-07-19 Genetic insights into ossification of the posterior longitudinal ligament of the spine Koike, Yoshinao Takahata, Masahiko Nakajima, Masahiro Otomo, Nao Suetsugu, Hiroyuki Liu, Xiaoxi Endo, Tsutomu Imagama, Shiro Kobayashi, Kazuyoshi Kaito, Takashi Kato, Satoshi Kawaguchi, Yoshiharu Kanayama, Masahiro Sakai, Hiroaki Tsuji, Takashi Miyamoto, Takeshi Inose, Hiroyuki Yoshii, Toshitaka Kashii, Masafumi Nakashima, Hiroaki Ando, Kei Taniguchi, Yuki Takeuchi, Kazuhiro Ito, Shuji Tomizuka, Kohei Hikino, Keiko Iwasaki, Yusuke Kamatani, Yoichiro Maeda, Shingo Nakajima, Hideaki Mori, Kanji Seichi, Atsushi Fujibayashi, Shunsuke Kanchiku, Tsukasa Watanabe, Kei Tanaka, Toshihiro Kida, Kazunobu Kobayashi, Sho Takahashi, Masahito Yamada, Kei Takuwa, Hiroshi Lu, Hsing-Fang Niida, Shumpei Ozaki, Kouichi Momozawa, Yukihide Yamazaki, Masashi Okawa, Atsushi Matsumoto, Morio Iwasaki, Norimasa Terao, Chikashi Ikegawa, Shiro eLife Genetics and Genomics Ossification of the posterior longitudinal ligament of the spine (OPLL) is an intractable disease leading to severe neurological deficits. Its etiology and pathogenesis are primarily unknown. The relationship between OPLL and comorbidities, especially type 2 diabetes (T2D) and high body mass index (BMI), has been the focus of attention; however, no trait has been proven to have a causal relationship. We conducted a meta-analysis of genome-wide association studies (GWASs) using 22,016 Japanese individuals and identified 14 significant loci, 8 of which were previously unreported. We then conducted a gene-based association analysis and a transcriptome-wide Mendelian randomization approach and identified three candidate genes for each. Partitioning heritability enrichment analyses observed significant enrichment of the polygenic signals in the active enhancers of the connective/bone cell group, especially H3K27ac in chondrogenic differentiation cells, as well as the immune/hematopoietic cell group. Single-cell RNA sequencing of Achilles tendon cells from a mouse Achilles tendon ossification model confirmed the expression of genes in GWAS and post-GWAS analyses in mesenchymal and immune cells. Genetic correlations with 96 complex traits showed positive correlations with T2D and BMI and a negative correlation with cerebral aneurysm. Mendelian randomization analysis demonstrated a significant causal effect of increased BMI and high bone mineral density on OPLL. We evaluated the clinical images in detail and classified OPLL into cervical, thoracic, and the other types. GWAS subanalyses identified subtype-specific signals. A polygenic risk score for BMI demonstrated that the effect of BMI was particularly strong in thoracic OPLL. Our study provides genetic insight into the etiology and pathogenesis of OPLL and is expected to serve as a basis for future treatment development. eLife Sciences Publications, Ltd 2023-07-18 /pmc/articles/PMC10353864/ /pubmed/37461309 http://dx.doi.org/10.7554/eLife.86514 Text en © 2023, Koike, Takahata, Nakajima et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Genetics and Genomics
Koike, Yoshinao
Takahata, Masahiko
Nakajima, Masahiro
Otomo, Nao
Suetsugu, Hiroyuki
Liu, Xiaoxi
Endo, Tsutomu
Imagama, Shiro
Kobayashi, Kazuyoshi
Kaito, Takashi
Kato, Satoshi
Kawaguchi, Yoshiharu
Kanayama, Masahiro
Sakai, Hiroaki
Tsuji, Takashi
Miyamoto, Takeshi
Inose, Hiroyuki
Yoshii, Toshitaka
Kashii, Masafumi
Nakashima, Hiroaki
Ando, Kei
Taniguchi, Yuki
Takeuchi, Kazuhiro
Ito, Shuji
Tomizuka, Kohei
Hikino, Keiko
Iwasaki, Yusuke
Kamatani, Yoichiro
Maeda, Shingo
Nakajima, Hideaki
Mori, Kanji
Seichi, Atsushi
Fujibayashi, Shunsuke
Kanchiku, Tsukasa
Watanabe, Kei
Tanaka, Toshihiro
Kida, Kazunobu
Kobayashi, Sho
Takahashi, Masahito
Yamada, Kei
Takuwa, Hiroshi
Lu, Hsing-Fang
Niida, Shumpei
Ozaki, Kouichi
Momozawa, Yukihide
Yamazaki, Masashi
Okawa, Atsushi
Matsumoto, Morio
Iwasaki, Norimasa
Terao, Chikashi
Ikegawa, Shiro
Genetic insights into ossification of the posterior longitudinal ligament of the spine
title Genetic insights into ossification of the posterior longitudinal ligament of the spine
title_full Genetic insights into ossification of the posterior longitudinal ligament of the spine
title_fullStr Genetic insights into ossification of the posterior longitudinal ligament of the spine
title_full_unstemmed Genetic insights into ossification of the posterior longitudinal ligament of the spine
title_short Genetic insights into ossification of the posterior longitudinal ligament of the spine
title_sort genetic insights into ossification of the posterior longitudinal ligament of the spine
topic Genetics and Genomics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10353864/
https://www.ncbi.nlm.nih.gov/pubmed/37461309
http://dx.doi.org/10.7554/eLife.86514
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