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BRISC-Mediated PPM1B-K63 Deubiquitination and Subsequent TGF-β Pathway Activation Promote High-Fat/High-Sucrose Diet-Induced Arterial Stiffness.
- Source :
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Circulation research [Circ Res] 2025 Jan 31; Vol. 136 (3), pp. 297-314. Date of Electronic Publication: 2025 Jan 01. - Publication Year :
- 2025
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Abstract
- Background: Metabolic syndrome heightens cardiovascular disease risk primarily through increased arterial stiffness. We previously demonstrated the involvement of YAP (Yes-associated protein) in high-fat/high-sucrose diet (HFHSD)-induced arterial stiffness via modulation of PPM1B (protein phosphatase Mg <superscript>2+</superscript> /Mn <superscript>2+</superscript> -dependent 1B)-lysine 63(K63) deubiquitination. In this study, we aimed to elucidate the role and mechanisms underlying PPM1B deubiquitination in HFHSD-induced arterial stiffness.<br />Methods: Enzymes governing PPM1B deubiquitination were identified through small interfering RNA (siRNA) screening and mass spectrometry. Glutathione S-transferase pull-down, coimmunoprecipitation, protein purification, and immunofluorescence were used to explore the mechanism underlying PPM1B deubiquitination. Doppler ultrasound was used to evaluate HFHSD-induced arterial stiffness in mice, and telemetry was used to record pulsatile (systolic and diastolic) blood pressure.<br />Results: Smooth muscle cell-specific PPM1B overexpression attenuated HFHSD-induced arterial stiffness in mice in a PPM1B-K326-K63-linked polyubiquitination-dependent manner. Mechanistically, ABRO1 (Abraxas brother 1; a core BRCC36 [BRCA1/BRCA2 (breast cancer type 1/2)-containing complex subunit 36] isopeptidase complex component) directly bound YAP and underwent liquid-liquid phase separation with YAP and PPM1B in a YAP-dependent manner, which in turn promoted PPM1B deubiquitination. Furthermore, smooth muscle cell-specific Abro1 -knockout mice and Brcc3 -knockout mice showed attenuated HFHSD-induced arterial stiffness and activation of transforming growth factor-β-Smad (mothers against decapentaplegic homolog) signaling.<br />Conclusions: We elucidated the PPM1B deubiquitination mechanisms and highlighted a potential therapeutic target for metabolic syndrome-related arterial stiffness.<br />Competing Interests: None.
- Subjects :
- Animals
Mice
Male
Signal Transduction
Humans
Mice, Knockout
YAP-Signaling Proteins metabolism
Metabolic Syndrome metabolism
Metabolic Syndrome etiology
Metabolic Syndrome genetics
Myocytes, Smooth Muscle metabolism
Lysine metabolism
Vascular Stiffness
Diet, High-Fat adverse effects
Ubiquitination
Mice, Inbred C57BL
Transforming Growth Factor beta metabolism
Protein Phosphatase 2C metabolism
Protein Phosphatase 2C genetics
Subjects
Details
- Language :
- English
- ISSN :
- 1524-4571
- Volume :
- 136
- Issue :
- 3
- Database :
- MEDLINE
- Journal :
- Circulation research
- Publication Type :
- Academic Journal
- Accession number :
- 39742393
- Full Text :
- https://doi.org/10.1161/CIRCRESAHA.124.325590