SNX3 mediates heart failure by interacting with HMGB1 and subsequently facilitating its nuclear-cytoplasmic translocation.

IF 6.9 1区 医学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Hong Li, Ming-Xia Peng, Rui-Xue Yang, Jian-Xing Chen, Yue-Mei Wang, Pan-Xia Wang, Yue-Huai Hu, Di-Yi Pan, Pei-Qing Liu, Jing Lu
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Abstract

Sorting nexins (SNXs) as the key regulators of sorting cargo proteins are involved in diverse diseases. SNXs can form the specific reverse vesicle transport complex (SNXs-retromer) with vacuolar protein sortings (VPSs) to sort and modulate recovery and degradation of cargo proteins. Our previous study has shown that SNX3-retromer promotes both STAT3 activation and nuclear translocation in cardiomyocytes, suggesting that SNX3 might be a critical regulator in the heart. In this study we investigated the role of SNX3 in the development of pathological cardiac hypertrophy and heart failure. We generated abdominal aortic constriction (AAC) rat model and transverse aortic constriction (TAC) mouse model; hypertrophic neonatal rat cardiomyocytes (NRCMs) were induced by exposure to isoproterenol (10 μM). We showed that the expression of SNX3 was significantly upregulated in ISO-treated NRCMs and in the failing heart of AAC rats. Overexpression of SNX3 by intramyocardial injection of Ad-SNX3 induced heart failure in rats, and increased the susceptibility of NRCMs to ISO-induced myocardial injury in vitro. In contrast, conditional knockout of SNX3 in cardiac tissue in mice rescued the detrimental heart function in TAC mice, and knockdown of SNX3 protected against ISO-induced injury in NRCMs and AAC rats. We then conducted immunoprecipitation-based mass spectrometry and localized surface plasmon resonance, and demonstrated a direct interaction between SNX3-retromer and high mobility group box 1 (HMGB1), which mediated the efflux of nuclear HMGB1. Moreover, overexpression of HMGB1 in NRCMs inhibited the pro-hypertrophic effects of SNX3, whereas knockdown of HMGB1 abolished the protective effect of SNX3-deficiency. These results suggest that HMGB1 might be a direct cargo protein of SNX3-retromer, and its interaction with SNX3 promotes its efflux from the nucleus, leading to the pathological development of heart failure.

SNX3通过与HMGB1相互作用并随后促进其核细胞质易位介导心力衰竭。
分选连接蛋白(SNXs)作为分选货物蛋白的关键调控因子,参与多种疾病的发生。SNXs可与液泡蛋白分选(vps)形成特异性的逆囊泡转运复合体(SNXs-retromer),分选和调节货物蛋白的回收和降解。我们之前的研究表明,SNX3-retromer可以促进心肌细胞STAT3的激活和核易位,这表明SNX3可能是心脏的关键调节因子。在本研究中,我们探讨了SNX3在病理性心脏肥厚和心力衰竭发展中的作用。建立腹主动脉缩窄(AAC)大鼠模型和横主动脉缩窄(TAC)小鼠模型;异丙肾上腺素(10 μM)诱导新生大鼠心肌细胞肥厚。我们发现,在iso处理的nrcm和AAC大鼠衰竭心脏中,SNX3的表达显著上调。通过心肌内注射Ad-SNX3过表达SNX3诱导大鼠心力衰竭,并增加NRCMs对体外iso诱导心肌损伤的敏感性。相反,在小鼠心脏组织中条件敲除SNX3可以挽救TAC小鼠的心脏功能,而敲除SNX3可以保护NRCMs和AAC大鼠免受iso诱导的损伤。然后,我们采用免疫沉淀质谱法和局部表面等离子体共振,证实了SNX3-retromer与高迁移率组盒1 (HMGB1)之间的直接相互作用,介导核HMGB1的外排。此外,nrcm中HMGB1的过表达抑制了SNX3的促肥厚作用,而HMGB1的敲低则消除了SNX3缺乏的保护作用。这些结果提示HMGB1可能是SNX3逆转录物的直接货运蛋白,其与SNX3的相互作用促进SNX3从细胞核外排,导致心力衰竭的病理发展。
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来源期刊
Acta Pharmacologica Sinica
Acta Pharmacologica Sinica 医学-化学综合
CiteScore
15.10
自引率
2.40%
发文量
4365
审稿时长
2 months
期刊介绍: APS (Acta Pharmacologica Sinica) welcomes submissions from diverse areas of pharmacology and the life sciences. While we encourage contributions across a broad spectrum, topics of particular interest include, but are not limited to: anticancer pharmacology, cardiovascular and pulmonary pharmacology, clinical pharmacology, drug discovery, gastrointestinal and hepatic pharmacology, genitourinary, renal, and endocrine pharmacology, immunopharmacology and inflammation, molecular and cellular pharmacology, neuropharmacology, pharmaceutics, and pharmacokinetics. Join us in sharing your research and insights in pharmacology and the life sciences.
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索莱宝
anti-SNX3 antibody
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4% paraformaldehyde
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