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PCSK9 可导致糖尿病肾病中的炎症和 cGAS/STING 通路激活。

PCSK9 causes inflammation and cGAS/STING pathway activation in diabetic nephropathy.

机构信息

Department of Nephrology, the Third Xiangya Hospital, Central South University, Changsha, China.

The Critical Kidney Disease Research Center of Central South University, Changsha, China.

出版信息

FASEB J. 2023 Sep;37(9):e23127. doi: 10.1096/fj.202300342RRR.

Abstract

Our previous research revealed that an increase in PCSK9 is linked to aggravated inflammation in the kidneys of mice affected by a high-fat diet and streptozotocin (HFD/STZ) or in HGPA-induced HK-2 cells. Furthermore, the cGAS/STING pathway has been reported to be involved in diabetic nephropathy (DN). Therefore, in this study, we aimed to examine the correlation between the proinflammatory effect of PCSK9 and the cGAS/STING pathway in DN. We used PCSK9 mAbs to inhibit PCSK9 in vivo and PCSK9 siRNA in vitro and measured the inflammatory phenotype in HFD/STZ-treated mice or HGPA-induced HK-2 cells, and observed decreased blood urea nitrogen, creatinine, UACR, and kidney injury in response to the PCSK9 mAb in HFD/STZ-treated mice. Moreover, IL-1 β, MCP-1, and TNF-α levels were reduced by the PCSK9 mAb in vivo and PCSK9 siRNA in vitro. We observed increased mtDNA damage and activation of the cGAS-STING signaling pathway during DN, as well as the downstream targets p-TBK1, p-NF-κB p65, and IL-1β. In a further experiment with an HGPA-induced DN model in HK-2 cells, we revealed that mtDNA damage was increased, which led to the activation of the cGAS/STING system and its downstream targets. Notably, the cGAS-STING signaling pathway was inhibited by the PCSK9 mAb in vivo and PCSK9 siRNA in vitro. In addition, inhibition of STING with C-176 in HGPA-induced HK-2 cells markedly blocked inflammation. In conclusion, we report for the first time that PCSK9 triggers mitochondrial DNA damage and activates the cGAS-STING pathway in DN, which leads to a series of inflammation cascades. PCSK9-targeted intervention can effectively reduce DN inflammation and delay its progression. Moreover, the inhibition of STING significantly abrogated the inflammation triggered by HGPA in HK-2 cells.

摘要

我们之前的研究表明,PCSK9 的增加与高脂肪饮食和链脲佐菌素(HFD/STZ)或高糖诱导的 HK-2 细胞影响下的小鼠肾脏炎症加重有关。此外,cGAS/STING 途径已被报道与糖尿病肾病(DN)有关。因此,在本研究中,我们旨在研究 PCSK9 的促炎作用与 DN 中的 cGAS/STING 途径之间的相关性。我们使用 PCSK9 mAb 体内抑制 PCSK9 和 PCSK9 siRNA 体外,并测量 HFD/STZ 处理的小鼠或 HGPA 诱导的 HK-2 细胞中的炎症表型,并观察到 HFD/STZ 处理的小鼠中 PCSK9 mAb 治疗导致血尿素氮、肌酐、UACR 和肾脏损伤减少。此外,体内的 PCSK9 mAb 和体外的 PCSK9 siRNA 降低了 IL-1β、MCP-1 和 TNF-α 水平。我们观察到在 DN 期间 mtDNA 损伤和 cGAS-STING 信号通路的激活增加,以及下游靶标 p-TBK1、p-NF-κB p65 和 IL-1β。在进一步的 HK-2 细胞中 HGPA 诱导的 DN 模型实验中,我们发现 mtDNA 损伤增加,导致 cGAS/STING 系统及其下游靶标激活。值得注意的是,体内的 PCSK9 mAb 和体外的 PCSK9 siRNA 抑制了 cGAS-STING 信号通路。此外,用 C-176 抑制 HGPA 诱导的 HK-2 细胞中的 STING 显著阻断了炎症。总之,我们首次报道 PCSK9 触发 mtDNA 损伤并激活 DN 中的 cGAS-STING 途径,从而引发一系列炎症级联反应。PCSK9 靶向干预可有效减轻 DN 炎症并延缓其进展。此外,抑制 STING 显著阻断了 HGPA 在 HK-2 细胞中引发的炎症。

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