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Biochemical and Functional Characterization of RNF213 (Mysterin) R4810K, a Susceptibility Mutation of Moyamoya Disease, in Angiogenesis In Vitro and In Vivo

BACKGROUND: P.R4810K of RNF213 (mysterin: rs112735431), which is an AAA(+) ATPase, is the susceptibility polymorphism for moyamoya disease (MMD) in East Asians. However, the role of RNF213 R4810K in the etiology of MMD is unknown. METHODS AND RESULTS: To clarify the role of RNF213 in known angiogeni...

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Autores principales: Kobayashi, Hatasu, Matsuda, Yoshiko, Hitomi, Toshiaki, Okuda, Hiroko, Shioi, Hirotomo, Matsuda, Tetsuya, Imai, Hirohiko, Sone, Masakatsu, Taura, Daisuke, Harada, Kouji H, Habu, Toshiyuki, Takagi, Yasushi, Miyamoto, Susumu, Koizumi, Akio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4608092/
https://www.ncbi.nlm.nih.gov/pubmed/26126547
http://dx.doi.org/10.1161/JAHA.115.002146
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author Kobayashi, Hatasu
Matsuda, Yoshiko
Hitomi, Toshiaki
Okuda, Hiroko
Shioi, Hirotomo
Matsuda, Tetsuya
Imai, Hirohiko
Sone, Masakatsu
Taura, Daisuke
Harada, Kouji H
Habu, Toshiyuki
Takagi, Yasushi
Miyamoto, Susumu
Koizumi, Akio
author_facet Kobayashi, Hatasu
Matsuda, Yoshiko
Hitomi, Toshiaki
Okuda, Hiroko
Shioi, Hirotomo
Matsuda, Tetsuya
Imai, Hirohiko
Sone, Masakatsu
Taura, Daisuke
Harada, Kouji H
Habu, Toshiyuki
Takagi, Yasushi
Miyamoto, Susumu
Koizumi, Akio
author_sort Kobayashi, Hatasu
collection PubMed
description BACKGROUND: P.R4810K of RNF213 (mysterin: rs112735431), which is an AAA(+) ATPase, is the susceptibility polymorphism for moyamoya disease (MMD) in East Asians. However, the role of RNF213 R4810K in the etiology of MMD is unknown. METHODS AND RESULTS: To clarify the role of RNF213 in known angiogenic pathways, RNF213 expression was analyzed in endothelial cells (ECs) treated with several angiogenic and antiangiogenic factors, including interferons (IFNs). RNF213 was upregulated by IFN-β through signal transducer and activator of transcription x in the promoter and mediated antiangiogenic activity of IFN-β. RNF213 wild-type (WT) overexpression could not lower angiogenesis without IFN-β, but RNF213 R4810K overexpression could. To correlate biochemical function as ATPase and the role of RNF213 oligomer formation with antiangiogenic activity, we investigated the effects of mutations in the AAA(+) module. A mutation of the Walker B motif (WEQ), which stabilizes oligomerization, inhibited angiogenesis, but AAA(+) module deletion, which cannot initiate oligomerization, did not. Intriguingly, R4810K, similar to WEQ, decreased ATPase activity, suggesting its antiangiogenic activity through stabilizing oligomers. To confirm the antiangiogenic effect of RNF213 upregulation in vivo, vascular EC- or smooth muscle cell-specific Rnf213 R4757K (R4810K ortholog) or WT transgenic (Tg) mice were exposed to hypoxia. Cerebral angiogenesis by hypoxia was suppressed in EC-specific Rnf213 R4757K Tg mice, whereas it was not suppressed in other mice. CONCLUSIONS: This study suggests the importance of inflammatory signals as environmental factors and R4810K carriers for susceptibility to cerebral hypoxia. A specific inhibitor of ATP binding to the first AAA(+) could be a promising therapeutic candidate for MMD.
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spelling pubmed-46080922015-10-16 Biochemical and Functional Characterization of RNF213 (Mysterin) R4810K, a Susceptibility Mutation of Moyamoya Disease, in Angiogenesis In Vitro and In Vivo Kobayashi, Hatasu Matsuda, Yoshiko Hitomi, Toshiaki Okuda, Hiroko Shioi, Hirotomo Matsuda, Tetsuya Imai, Hirohiko Sone, Masakatsu Taura, Daisuke Harada, Kouji H Habu, Toshiyuki Takagi, Yasushi Miyamoto, Susumu Koizumi, Akio J Am Heart Assoc Original Research BACKGROUND: P.R4810K of RNF213 (mysterin: rs112735431), which is an AAA(+) ATPase, is the susceptibility polymorphism for moyamoya disease (MMD) in East Asians. However, the role of RNF213 R4810K in the etiology of MMD is unknown. METHODS AND RESULTS: To clarify the role of RNF213 in known angiogenic pathways, RNF213 expression was analyzed in endothelial cells (ECs) treated with several angiogenic and antiangiogenic factors, including interferons (IFNs). RNF213 was upregulated by IFN-β through signal transducer and activator of transcription x in the promoter and mediated antiangiogenic activity of IFN-β. RNF213 wild-type (WT) overexpression could not lower angiogenesis without IFN-β, but RNF213 R4810K overexpression could. To correlate biochemical function as ATPase and the role of RNF213 oligomer formation with antiangiogenic activity, we investigated the effects of mutations in the AAA(+) module. A mutation of the Walker B motif (WEQ), which stabilizes oligomerization, inhibited angiogenesis, but AAA(+) module deletion, which cannot initiate oligomerization, did not. Intriguingly, R4810K, similar to WEQ, decreased ATPase activity, suggesting its antiangiogenic activity through stabilizing oligomers. To confirm the antiangiogenic effect of RNF213 upregulation in vivo, vascular EC- or smooth muscle cell-specific Rnf213 R4757K (R4810K ortholog) or WT transgenic (Tg) mice were exposed to hypoxia. Cerebral angiogenesis by hypoxia was suppressed in EC-specific Rnf213 R4757K Tg mice, whereas it was not suppressed in other mice. CONCLUSIONS: This study suggests the importance of inflammatory signals as environmental factors and R4810K carriers for susceptibility to cerebral hypoxia. A specific inhibitor of ATP binding to the first AAA(+) could be a promising therapeutic candidate for MMD. John Wiley & Sons, Ltd 2015-06-30 /pmc/articles/PMC4608092/ /pubmed/26126547 http://dx.doi.org/10.1161/JAHA.115.002146 Text en © 2015 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley Blackwell. http://creativecommons.org/licenses/by-nc/4.0/ This is an open access article under the terms of the Creative Commons Attribution-NonCommercial License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Research
Kobayashi, Hatasu
Matsuda, Yoshiko
Hitomi, Toshiaki
Okuda, Hiroko
Shioi, Hirotomo
Matsuda, Tetsuya
Imai, Hirohiko
Sone, Masakatsu
Taura, Daisuke
Harada, Kouji H
Habu, Toshiyuki
Takagi, Yasushi
Miyamoto, Susumu
Koizumi, Akio
Biochemical and Functional Characterization of RNF213 (Mysterin) R4810K, a Susceptibility Mutation of Moyamoya Disease, in Angiogenesis In Vitro and In Vivo
title Biochemical and Functional Characterization of RNF213 (Mysterin) R4810K, a Susceptibility Mutation of Moyamoya Disease, in Angiogenesis In Vitro and In Vivo
title_full Biochemical and Functional Characterization of RNF213 (Mysterin) R4810K, a Susceptibility Mutation of Moyamoya Disease, in Angiogenesis In Vitro and In Vivo
title_fullStr Biochemical and Functional Characterization of RNF213 (Mysterin) R4810K, a Susceptibility Mutation of Moyamoya Disease, in Angiogenesis In Vitro and In Vivo
title_full_unstemmed Biochemical and Functional Characterization of RNF213 (Mysterin) R4810K, a Susceptibility Mutation of Moyamoya Disease, in Angiogenesis In Vitro and In Vivo
title_short Biochemical and Functional Characterization of RNF213 (Mysterin) R4810K, a Susceptibility Mutation of Moyamoya Disease, in Angiogenesis In Vitro and In Vivo
title_sort biochemical and functional characterization of rnf213 (mysterin) r4810k, a susceptibility mutation of moyamoya disease, in angiogenesis in vitro and in vivo
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4608092/
https://www.ncbi.nlm.nih.gov/pubmed/26126547
http://dx.doi.org/10.1161/JAHA.115.002146
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