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RhoGDI3 at the trans-Golgi network participates in NLRP3 inflammasome activation, VSMC phenotypic modulation, and neointima formation.
Sun, Jingwen; Zhu, Qingyu; Yu, Xiaoqiang; Liang, Xiuying; Guan, Haijing; Zhao, Heyan; Yao, Wenjuan.
Afiliação
  • Sun J; School of Pharmacy, Nantong University, 19 QiXiu Road, Nantong, 226001, China.
  • Zhu Q; School of Pharmacy, Nantong University, 19 QiXiu Road, Nantong, 226001, China.
  • Yu X; Department of Vascular Surgery, The First People's Hospital of Nantong, Nantong, 226001, China.
  • Liang X; School of Pharmacy, Nantong University, 19 QiXiu Road, Nantong, 226001, China.
  • Guan H; School of Pharmacy, Nantong University, 19 QiXiu Road, Nantong, 226001, China.
  • Zhao H; Medical School, Nantong University, 19 QiXiu Road, Nantong, 226001, China. Electronic address: zhy1983@ntu.edu.cn.
  • Yao W; School of Pharmacy, Nantong University, 19 QiXiu Road, Nantong, 226001, China. Electronic address: juanwenyy@ntu.edu.cn.
Atherosclerosis ; 387: 117391, 2023 12.
Article em En | MEDLINE | ID: mdl-38029612
ABSTRACT
BACKGROUND AND

AIMS:

The pathological roles and mechanisms of Rho-specific guanine nucleotide dissociation inhibitor 3 (RhoGDI3) in vascular smooth muscle cell (VSMC) phenotypic modulation and neointima formation are currently unknown. This study aimed to investigate how RhoGDI3 regulates the Nod-like receptor protein 3 (NLRP3) inflammasome in platelet-derived growth factor-BB (PDGF-BB)-induced neointima formation.

METHODS:

For in vitro assays, human aortic VSMCs (HA-VSMCs) were transfected with pcDNA3.1-GDI3 and RhoGDI3 siRNA to overexpress and knockdown RhoGDI3, respectively. HA-VSMCs were also treated with an NLRP3 inhibitor (CY-09) or agonist (NSS). Protein transcription and expression, cell proliferation and migration, Golgi morphology, and protein binding and colocalization were measured. For the in vivo assays, balloon injury (BI) rats were injected with recombinant adenovirus carrying RhoGDI3 shRNA. Carotid arterial morphology, protein expression and colocalization, and activation of the NLRP3 inflammasome were measured.

RESULTS:

PDGF-BB treatment induced transcription and expression of RhoGDI3 through PDGF receptor αß (PDGFRαß) rather than PDGFRαα or PDGFRßß in HA-VSMCs. RhoGDI3 suppression blocked PDGF-BB-induced VSMC phenotypic transformation. In contrast, RhoGDI3 overexpression further promoted PDGF-BB-induced VSMC dedifferentiation. The in vivo results also confirmed that RhoGDI3 expressed in VSMCs participated in neointima formation and muscle fiber and collagen deposition caused by balloon injury. In addition, PDGF-BB increased binding of RhoGDI3 to NLRP3 and apoptosis-associated speck-like protein containing a caspase recruitment domain (ASC) at the trans-Golgi membrane, which depended on the normal Golgi network. However, recruitment of NLRP3 and ASC to the trans-Golgi network after PDGF-BB treatment was independent of RhoGDI3. Moreover, RhoGDI3 knockdown significantly inhibited ASC expression and NLRP3 inflammasome assembly and activation and reduced NLRP3 protein stability in PDGF-BB-treated HA-VSMCs. Inhibiting NLRP3 effectively prevented PDGF-BB-induced VSMC phenotypic modulation, and an NLRP3 agonist reversed the decline in VSMC phenotypic transformation caused by RhoGDI3 knockdown. Furthermore, RhoGDI3 suppression reduced the protein levels and assembly of NLRP3 and ASC, and the activation of the NLRP3 inflammasome in VSMCs in a rat balloon injury model.

CONCLUSIONS:

The results of this study reveal a novel mechanism through which RhoGDI3 regulates VSMC phenotypic modulation and neointima formation by activating the NLRP3 inflammasome.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Neointima / Inflamassomos Limite: Animals / Humans Idioma: En Revista: Atherosclerosis Ano de publicação: 2023 Tipo de documento: Article País de afiliação: China

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Neointima / Inflamassomos Limite: Animals / Humans Idioma: En Revista: Atherosclerosis Ano de publicação: 2023 Tipo de documento: Article País de afiliação: China
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