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首页> 外文期刊>Cell death & disease. >Sestrin2 protects dendritic cells against endoplasmic reticulum stress-related apoptosis induced by high mobility group box-1 protein
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Sestrin2 protects dendritic cells against endoplasmic reticulum stress-related apoptosis induced by high mobility group box-1 protein

机译:Sestrin2保护树突状细胞免受高迁移率组箱-1蛋白诱导的内质网胁迫相关细胞凋亡

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Sestrin2 (SESN2) is a highly evolutionary conserved protein and involved in different cellular responses to various stresses. However, the potential function of SESN2 in immune system remains unclear. The present study was designed to test whether dendritic cells (DCs) could express SESN2, and investigate the underlying molecular mechanism as well as its potential significance. Herein, we firstly reported that SESN2 was expressed in DCs after high mobility group box-1 protein (HMGB1) stimulation and the apoptosis of DCs was obviously increased when SESN2 gene silenced by siRNA. Cells undergone SESN2-knockdown promoted endoplasmic reticulum (ER) stress (ERS)-related cell death, markedly exacerbated ER disruption as well as the formation of dilated and aggregated structures, and they significantly aggravated the extent of ERS response. Conversely, overexpressing SESN2 DCs markedly decreased apoptotic rates and attenuated HMGB1-induced ER morphology fragment together with inhibition of ERS-related protein translation. Furthermore, sesn2-/--deficient mice manifested increased DC apoptosis and aggravated ERS extent in septic model. These results indicate that SESN2 appears to be a potential regulator to inhibit apoptotic ERS signaling that exerts a protective effect on apoptosis of DCs in the setting of septic challenge.
机译:Sestrin2(Sesn2)是一种高度进化的保守蛋白,并参与各种应力的不同细胞反应。然而,SESN2在免疫系统中的潜在功能仍不清楚。本研究旨在测试树突细胞(DCS)是否可以表达SESN2,并研究下面的分子机制以及其潜在的意义。在此,我们首先报道了在高迁移率组盒-1蛋白(HMGB1)刺激之后在DCS中表达SESN2,并且当SIRNA沉默的SESN2基因时明显增加了DC的凋亡。细胞经过SESN2敲低促进的内质网(ER)应激(ER) - 重新化细胞死亡,显着加剧的ER中断以及扩张和聚集结构的形成,它们显着加剧了对响应的程度。相反,过表达SESN2 DCS显着降低了凋亡率和抑制了HMGB1诱导的ER形态片段,以及抑制与相关蛋白翻译的抑制作用。此外,SESN2 - / - 缺陷小鼠表现出增加的DC凋亡和脓毒模型中的增长患者程度。这些结果表明,SESN2似乎是潜在的调节剂,以抑制凋亡性的信号传导,对化脓性攻击的设定施加对DCS凋亡的保护作用。

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