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https://doi.org/10.24546/81003959
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2026-08-11
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81003959 (fulltext)
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81003959
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open access
出版タイプ
Version of Record
タイトル
Physiological Relevance of Hydrolysis of Atrial Natriuretic Peptide by Endothelin-Converting Enzyme-1
著者
Nakayama, Kazuhiko ; Emoto, Noriaki ; Suzuki, Yoko ; Vignon-Zellweger, Nicolas ; Yagi, Keiko ; Hirata, Ken-Ichi
著者名
Nakayama, Kazuhiko
著者名
Emoto, Noriaki
著者名
Suzuki, Yoko
著者名
Vignon-Zellweger, Nicolas
著者名
Yagi, Keiko
著者名
Hirata, Ken-Ichi
言語
English (英語)
収録物名
The Kobe journal of the medical sciences
巻(号)
58(1)
ページ
12-18
出版者
神戸大学医学部
Kobe University School of Medicine
刊行日
2012
公開日
2012-07-09
抄録
Endothelin-converting enzyme-1 (ECE-1) is a membrane-bound metalloprotease that cleaves biologically inactive big endothelin-1 (ET-1) into active ET-1. ET-1 is involved in the cardiovascular homeostasis and the development of cardiovascular diseases including pulmonary arterial hypertension and heart failure. Atrial natriuretic peptide (ANP) is an endogenous hormone that is released from the heart in response to myocardial stretch and overload. ANP was shown to be hydrolyzed by neutral endopeptidase 24.11 (NEP) which shares important structural features with ECE-1. Previous in vitro studies using recombinant soluble ECE-1 suggested that ECE-1 cleaved several biologically active peptides including ANP in addition to big ET-1. However, physiological relevance of ANP-degrading activity by ECE-1 has stayed unclear. Here, we aimed to investigate whether endogenous ECE-1 is able to hydrolyze ANP using live-cell based assay and ECE-1-deficient mice. Chinese hamster ovary (CHO) cells, which lack detectable levels of ECE activity, degraded ANP in the medium efficiently when transfected with ECE-1 cDNA. ANP peptide contents in the E14-15 embryos were significantly higher in ECE-1+/- mice compared with ECE-1+/+ mice. These observations strongly suggest that ECE-1 is involved in the physiological degradation of ANP in vivo. Thus, pharmacological inhibition of ECE-1 may provide a novel strategy to treat various cardiovascular diseases by suppressing and potentiating the ET and ANP pathway, respectively.
カテゴリ
The Kobe journal of the medical sciences
>
58巻
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58巻1号(2012)
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http://www.med.kobe-u.ac.jp/journal/contents.html
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資源タイプ
departmental bulletin paper
ISSN
0023-2513
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NCID
AA00711740
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