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ASB2 is a novel E3 ligase of SMAD9 required for cardiogenesis.
Min, Kyung-Duk; Asakura, Masanori; Shirai, Manabu; Yamazaki, Satoru; Ito, Shin; Fu, Hai Ying; Asanuma, Hiroshi; Asano, Yoshihiro; Minamino, Tetsuo; Takashima, Seiji; Kitakaze, Masafumi.
Afiliación
  • Min KD; Department of Clinical Research and Development, National Cerebral and Cardiovascular Center, 6-1 Kishibe- Shimmachi, Suita, Osaka, 564-8565, Japan.
  • Asakura M; Department of Clinical Research and Development, National Cerebral and Cardiovascular Center, 6-1 Kishibe- Shimmachi, Suita, Osaka, 564-8565, Japan.
  • Shirai M; Department of Cardiovascular and Renal Medicine, Hyogo College of Medicine, Hyogo, Japan.
  • Yamazaki S; Department of Bioscience, National Cerebral and Cardiovascular Center, Osaka, Japan.
  • Ito S; Omics Research Center, National Cerebral and Cardiovascular Center, Osaka, Japan.
  • Fu HY; Department of Cell Biology, National Cerebral and Cardiovascular Center, Osaka, Japan.
  • Asanuma H; Department of Molecular Pharmacology, National Cerebral and Cardiovascular Center, Osaka, Japan.
  • Asano Y; Department of Clinical Research and Development, National Cerebral and Cardiovascular Center, 6-1 Kishibe- Shimmachi, Suita, Osaka, 564-8565, Japan.
  • Minamino T; Department of Clinical Research and Development, National Cerebral and Cardiovascular Center, 6-1 Kishibe- Shimmachi, Suita, Osaka, 564-8565, Japan.
  • Takashima S; Department of Cardiorenal and Cerebrovascular Medicine, Faculty of Medicine, Kagawa University, Kagawa, Japan.
  • Kitakaze M; Department of Internal Medicine, Meiji University of Integrative Medicine, Kyoto, Japan.
Sci Rep ; 11(1): 23056, 2021 11 29.
Article en En | MEDLINE | ID: mdl-34845242
ABSTRACT
Cardiogenesis requires the orchestrated spatiotemporal tuning of BMP signalling upon the balance between induction and counter-acting suppression of the differentiation of the cardiac tissue. SMADs are key intracellular transducers and the selective degradation of SMADs by the ubiquitin-proteasome system is pivotal in the spatiotemporal tuning of BMP signalling. However, among three SMADs for BMP signalling, SMAD1/5/9, only the specific E3 ligase of SMAD9 remains poorly investigated. Here, we report for the first time that SMAD9, but not the other SMADs, is ubiquitylated by the E3 ligase ASB2 and targeted for proteasomal degradation. ASB2, as well as Smad9, is conserved among vertebrates. ASB2 expression was specific to the cardiac region from the very early stage of cardiac differentiation in embryogenesis of mouse. Knockdown of Asb2 in zebrafish resulted in a thinned ventricular wall and dilated ventricle, which were rescued by simultaneous knockdown of Smad9. Abundant Smad9 protein leads to dysregulated cardiac differentiation through a mechanism involving Tbx2, and the BMP signal conducted by Smad9 was downregulated under quantitative suppression of Smad9 by Asb2. Our findings demonstrate that ASB2 is the E3 ligase of SMAD9 and plays a pivotal role in cardiogenesis through regulating BMP signalling.
Asunto(s)

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Proteína Smad8 / Proteínas Supresoras de la Señalización de Citocinas / Corazón Límite: Animals / Humans Idioma: En Revista: Sci Rep Año: 2021 Tipo del documento: Article País de afiliación: Japón

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Proteína Smad8 / Proteínas Supresoras de la Señalización de Citocinas / Corazón Límite: Animals / Humans Idioma: En Revista: Sci Rep Año: 2021 Tipo del documento: Article País de afiliación: Japón