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Ddhd1 knockout mouse as a model of locomotive and physiological abnormality in familial spastic paraplegia

We have previously reported a novel homozygous 4-bp deletion in DDHD1 as the responsible variant for spastic paraplegia type 28 (SPG28; OMIM#609340). The variant causes a frameshift, resulting in a functionally null allele in the patient. DDHD1 encodes phospholipase A(1) (PLA(1)) catalyzing phosphat...

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Autores principales: Morikawa, Takuya, Ohishi, Hiroaki, Kosaka, Kengo, Shimojo, Tomofumi, Nagano, Akihiro, Taniguchi, Itsuki, Fujioka, Ryuta, Moriyama, Kosei, Unoki, Motoko, Takahashi, Masatomo, Nakao, Motonao, Izumi, Yoshihiro, Bamba, Takeshi, Sasaki, Hiroyuki, Miura, Shiroh, Shibata, Hiroki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7921290/
https://www.ncbi.nlm.nih.gov/pubmed/33600578
http://dx.doi.org/10.1042/BSR20204171
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author Morikawa, Takuya
Ohishi, Hiroaki
Kosaka, Kengo
Shimojo, Tomofumi
Nagano, Akihiro
Taniguchi, Itsuki
Fujioka, Ryuta
Moriyama, Kosei
Unoki, Motoko
Takahashi, Masatomo
Nakao, Motonao
Izumi, Yoshihiro
Bamba, Takeshi
Sasaki, Hiroyuki
Miura, Shiroh
Shibata, Hiroki
author_facet Morikawa, Takuya
Ohishi, Hiroaki
Kosaka, Kengo
Shimojo, Tomofumi
Nagano, Akihiro
Taniguchi, Itsuki
Fujioka, Ryuta
Moriyama, Kosei
Unoki, Motoko
Takahashi, Masatomo
Nakao, Motonao
Izumi, Yoshihiro
Bamba, Takeshi
Sasaki, Hiroyuki
Miura, Shiroh
Shibata, Hiroki
author_sort Morikawa, Takuya
collection PubMed
description We have previously reported a novel homozygous 4-bp deletion in DDHD1 as the responsible variant for spastic paraplegia type 28 (SPG28; OMIM#609340). The variant causes a frameshift, resulting in a functionally null allele in the patient. DDHD1 encodes phospholipase A(1) (PLA(1)) catalyzing phosphatidylinositol to lysophosphatidylinositol (LPI). To clarify the pathogenic mechanism of SPG28, we established Ddhd1 knockout mice (Ddhd1[−/−]) carrying a 5-bp deletion in Ddhd1, resulting in a premature termination of translation at a position similar to that of the patient. We observed a significant decrease in foot–base angle (FBA) in aged Ddhd1(−/−) (24 months of age) and a significant decrease in LPI 20:4 (sn-2) in Ddhd1(−/−) cerebra (26 months of age). These changes in FBA were not observed in 14 months of age. We also observed significant changes of expression levels of 22 genes in the Ddhd1(−/−) cerebra (26 months of age). Gene Ontology (GO) terms relating to the nervous system and cell–cell communications were significantly enriched. We conclude that the reduced signaling of LPI 20:4 (sn-2) by PLA(1) dysfunction is responsible for the locomotive abnormality in SPG28, further suggesting that the reduction of downstream signaling such as GPR55 which is agonized by LPI is involved in the pathogenesis of SPG28.
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spelling pubmed-79212902021-03-09 Ddhd1 knockout mouse as a model of locomotive and physiological abnormality in familial spastic paraplegia Morikawa, Takuya Ohishi, Hiroaki Kosaka, Kengo Shimojo, Tomofumi Nagano, Akihiro Taniguchi, Itsuki Fujioka, Ryuta Moriyama, Kosei Unoki, Motoko Takahashi, Masatomo Nakao, Motonao Izumi, Yoshihiro Bamba, Takeshi Sasaki, Hiroyuki Miura, Shiroh Shibata, Hiroki Biosci Rep Molecular Bases of Health & Disease We have previously reported a novel homozygous 4-bp deletion in DDHD1 as the responsible variant for spastic paraplegia type 28 (SPG28; OMIM#609340). The variant causes a frameshift, resulting in a functionally null allele in the patient. DDHD1 encodes phospholipase A(1) (PLA(1)) catalyzing phosphatidylinositol to lysophosphatidylinositol (LPI). To clarify the pathogenic mechanism of SPG28, we established Ddhd1 knockout mice (Ddhd1[−/−]) carrying a 5-bp deletion in Ddhd1, resulting in a premature termination of translation at a position similar to that of the patient. We observed a significant decrease in foot–base angle (FBA) in aged Ddhd1(−/−) (24 months of age) and a significant decrease in LPI 20:4 (sn-2) in Ddhd1(−/−) cerebra (26 months of age). These changes in FBA were not observed in 14 months of age. We also observed significant changes of expression levels of 22 genes in the Ddhd1(−/−) cerebra (26 months of age). Gene Ontology (GO) terms relating to the nervous system and cell–cell communications were significantly enriched. We conclude that the reduced signaling of LPI 20:4 (sn-2) by PLA(1) dysfunction is responsible for the locomotive abnormality in SPG28, further suggesting that the reduction of downstream signaling such as GPR55 which is agonized by LPI is involved in the pathogenesis of SPG28. Portland Press Ltd. 2021-02-26 /pmc/articles/PMC7921290/ /pubmed/33600578 http://dx.doi.org/10.1042/BSR20204171 Text en © 2021 The Author(s). https://creativecommons.org/licenses/by/4.0/ This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Molecular Bases of Health & Disease
Morikawa, Takuya
Ohishi, Hiroaki
Kosaka, Kengo
Shimojo, Tomofumi
Nagano, Akihiro
Taniguchi, Itsuki
Fujioka, Ryuta
Moriyama, Kosei
Unoki, Motoko
Takahashi, Masatomo
Nakao, Motonao
Izumi, Yoshihiro
Bamba, Takeshi
Sasaki, Hiroyuki
Miura, Shiroh
Shibata, Hiroki
Ddhd1 knockout mouse as a model of locomotive and physiological abnormality in familial spastic paraplegia
title Ddhd1 knockout mouse as a model of locomotive and physiological abnormality in familial spastic paraplegia
title_full Ddhd1 knockout mouse as a model of locomotive and physiological abnormality in familial spastic paraplegia
title_fullStr Ddhd1 knockout mouse as a model of locomotive and physiological abnormality in familial spastic paraplegia
title_full_unstemmed Ddhd1 knockout mouse as a model of locomotive and physiological abnormality in familial spastic paraplegia
title_short Ddhd1 knockout mouse as a model of locomotive and physiological abnormality in familial spastic paraplegia
title_sort ddhd1 knockout mouse as a model of locomotive and physiological abnormality in familial spastic paraplegia
topic Molecular Bases of Health & Disease
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7921290/
https://www.ncbi.nlm.nih.gov/pubmed/33600578
http://dx.doi.org/10.1042/BSR20204171
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