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抑制 NLRP3 炎性小体通过上调 HIF1A 和 BNIP3 介导的线粒体自噬减轻对比剂诱导的急性肾损伤中的细胞凋亡。

Inhibiting NLRP3 inflammasome attenuates apoptosis in contrast-induced acute kidney injury through the upregulation of HIF1A and BNIP3-mediated mitophagy.

机构信息

Department of Nephrology, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, China.

出版信息

Autophagy. 2021 Oct;17(10):2975-2990. doi: 10.1080/15548627.2020.1848971. Epub 2020 Dec 19.

Abstract

The pathogenetic mechanism of contrast-induced acute kidney injury (CI-AKI), which is the third most common cause of hospital-acquired AKI, has not been elucidated. Previously, we demonstrated that renal injury and cell apoptosis were attenuated in knockout CI-AKI mice. Here, we investigated the mechanism underlying NLRP3 inhibition-mediated attenuation of apoptosis in CI-AKI. The RNA sequencing analysis of renal cortex revealed that the or knockout CI-AKI mice exhibited upregulated cellular response to hypoxia, mitochondrial oxidation, and autophagy when compared with the wild-type (WT) CI-AKI mice, which indicated that NLRP3 inflammasome inhibition resulted in the upregulation of hypoxia signaling pathway and mitophagy. The or knockout CI-AKI mice and iohexol-treated HK-2 cells with MCC950 pretreatment exhibited upregulated levels of HIF1A, BECN1, BNIP3, and LC3B-II, as well as enhanced colocalization of LC3B with BNIP3 and mitochondria, and colocalization of mitochondria with lysosomes. Additionally, roxadustat, a HIF prolyl-hydroxylase inhibitor, protected the renal tubular epithelial cells against iohexol-induced injury through stabilization of HIF1A and activation of downstream BNIP3-mediated mitophagy and . Moreover, BNIP3 deficiency markedly decreased mitophagy, and also significantly exacerbated apoptosis and renal injury. This suggested the protective function of BNIP3-mediated mitophagy in CI-AKI. This study elucidated a novel mechanism in which NLRP3 inflammasome inhibition attenuated apoptosis and upregulated HIF1A and BNIP3-mediated mitophagy in CI-AKI. Additionally, this study demonstrated the potential applications of MCC950 and roxadustat in clinical CI-AKI treatment. BNIP3: BCL2/adenovirus E1B interacting protein 3; Ctrl: control; DAPI: 4',6-diamidino-2-phenylindole dihydrochloride; EGLN2/PHD1: egl-9 family hypoxia-inducible factor 2; HIF1A: hypoxia inducible factor 1, alpha subunit; H-E: hematoxylin and eosin; IL18: interleukin 18; IL1B: interleukin 1 beta; LAMP1: lysosomal-associated membrane protein 1; MAP1LC3B/LC3B: microtubule-associated protein 1 light chain 3 beta; mRNA: messenger RNA; NFKB/NF-κB: nuclear factor of kappa light polypeptide gene enhancer in B cells; NLRP3: NLR family, pyrin domain containing 3; NS: normal saline; PRKN/Parkin: parkin RBR E3 ubiquitin protein ligase; PINK1: PTEN induced putative kinase 1; RNA: ribonucleic acid; SEM: standard error of the mean; siRNA: small interfering RNA; TEM: transmission electron microscopy; TUBA/α-tubulin: tubulin, alpha; TUNEL: terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling; VDAC: voltage-dependent anion channel; WT: wild-type.

摘要

对比剂诱导急性肾损伤(CI-AKI)的发病机制尚未阐明,它是医院获得性 AKI 的第三大常见原因。先前,我们证明在 敲除的 CI-AKI 小鼠中,肾损伤和细胞凋亡减轻。在这里,我们研究了 NLRP3 抑制介导的 CI-AKI 细胞凋亡减弱的机制。肾皮质的 RNA 测序分析表明,与野生型(WT)CI-AKI 小鼠相比, 或 敲除的 CI-AKI 小鼠表现出对缺氧、线粒体氧化和自噬的细胞反应增强,这表明 NLRP3 炎性小体抑制导致缺氧信号通路和线粒体自噬的上调。 或 敲除的 CI-AKI 小鼠和用 MCC950 预处理的 iohexol 处理的 HK-2 细胞表现出 HIF1A、BECN1、BNIP3 和 LC3B-II 的水平升高,以及 LC3B 与 BNIP3 和线粒体的共定位增强,以及线粒体与溶酶体的共定位。此外,HIF 脯氨酰羟化酶抑制剂罗沙司他通过稳定 HIF1A 和激活 BNIP3 介导的线粒体自噬来保护肾小管上皮细胞免受 iohexol 诱导的损伤。此外,BNIP3 缺陷显著减少线粒体自噬,并显著加重细胞凋亡和肾损伤。这表明 BNIP3 介导的线粒体自噬在 CI-AKI 中具有保护作用。本研究阐明了 NLRP3 炎性小体抑制在 CI-AKI 中减弱细胞凋亡和上调 HIF1A 和 BNIP3 介导的线粒体自噬的新机制。此外,本研究还证明了 MCC950 和罗沙司他在临床 CI-AKI 治疗中的潜在应用。BNIP3:BCL2/腺病毒 E1B 相互作用蛋白 3;Ctrl:对照;DAPI:4',6-二脒基-2-苯基吲哚二盐酸盐;EGLN2/PHD1:egl-9 家族缺氧诱导因子 2;HIF1A:缺氧诱导因子 1,α 亚基;H-E:苏木精和伊红;IL18:白细胞介素 18;IL1B:白细胞介素 1β;LAMP1:溶酶体相关膜蛋白 1;MAP1LC3B/LC3B:微管相关蛋白 1 轻链 3β;mRNA:信使 RNA;NFKB/NF-κB:B 细胞中核因子 kappa 轻多肽基因增强子;NLRP3:NLR 家族,吡啶域包含 3;NS:生理盐水;PRKN/Parkin:Parkin RBR E3 泛素蛋白连接酶;PINK1:PTEN 诱导的假定激酶 1;RNA:核糖核酸;SEM:平均值的标准误差;siRNA:小干扰 RNA;TEM:透射电子显微镜;TUBA/α-微管蛋白:微管蛋白,α;TUNEL:末端脱氧核苷酸转移酶介导的 dUTP 缺口末端标记;VDAC:电压依赖性阴离子通道;WT:野生型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb31/8525960/bd036ee1a9b9/KAUP_A_1848971_F0001_C.jpg

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