SIRT1抑制诱导的线粒体损伤促进肝癌细胞gsdme依赖性焦亡

IF 2.4 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Molecular Biotechnology Pub Date : 2024-12-01 Epub Date: 2023-12-03 DOI:10.1007/s12033-023-00964-z
Di Liu, Junhao Liu, Kejun Liu, Yanchao Hu, Jinming Feng, Yang Bu, Qi Wang
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引用次数: 0

摘要

肝细胞癌(HCC)是一种影响肝脏的恶性肿瘤,对人类健康构成重大威胁。为了充分了解SIRT1(一种与肿瘤发生相关的蛋白)在HCC发展中的作用,需要进一步的研究。目的:探讨SIRT1在HCC中的作用并阐明其作用机制。收集8对肝癌及癌旁正常组织标本。采用免疫组织化学和western blotting检测组织样品中SIRT1和GSDME的水平。采用逆转录-定量聚合酶链反应(RT-qPCR)和western blotting检测HCC (Huh7、HepG2、SNU-423、SNU-398和HCCLM3)和L-02细胞中SIRT1水平。用si-SIRT1和/或si-GSDME转染SNU-423和HCCLM3细胞,降低SIRT1或GSDME的表达。采用RT-qPCR和western blotting检测SIRT1、pro-casp-3、cl-casp-3、GSDME、GSDME- n、PGC-1α、Bax和细胞色素c (Cyto c)的表达,分别采用细胞计数试剂盒-8 (CCK-8)、伤口愈合试验、Transwell侵袭试验和流式细胞术评估细胞增殖、迁移、侵袭和凋亡。乳酸脱氢酶(LDH)的释放用LDH试剂盒评估。SIRT1在HCC组织和细胞中表达上调,且与GSDME-N呈负相关。SIRT1沉默抑制HCC细胞的增殖、迁移和侵袭,同时促进细胞凋亡和诱导线粒体损伤。此外,SIRT1的沉默导致HCC细胞质膜上形成大泡,导致细胞肿胀,gsdme依赖性焦亡加重,导致LDH释放增加。抑制GSDME可减少SIRT1沉默诱导的细胞肿胀,降低LDH释放率,促进细胞凋亡。SIRT1沉默通过破坏线粒体促进HCC细胞中gsdme依赖性焦亡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

SIRT1 Inhibition-Induced Mitochondrial Damage Promotes GSDME-Dependent Pyroptosis in Hepatocellular Carcinoma Cells.

SIRT1 Inhibition-Induced Mitochondrial Damage Promotes GSDME-Dependent Pyroptosis in Hepatocellular Carcinoma Cells.

Hepatocellular carcinoma (HCC) is a malignant tumor that affects the liver and poses a significant threat to human health. Further investigation is necessary to fully understand the role of SIRT1, a protein linked to tumorigenesis, in HCC development. To investigate the effect of SIRT1 on HCC and elucidate the underlying mechanism. Eight pairs of HCC and paracancerous normal tissue specimens were collected. The levels of SIRT1 and GSDME in tissue samples were assessed using immunohistochemistry and western blotting. SIRT1 levels were determined in HCC (Huh7, HepG2, SNU-423, SNU-398, and HCCLM3) and L-02 cells using reverse transcription-quantitative polymerase chain reaction (RT-qPCR) and western blotting. SNU-423 and HCCLM3 cells were transfected with si-SIRT1 and/or si-GSDME to knock down SIRT1 or GSDME expression. RT-qPCR and western blotting were performed to measure the expression of SIRT1, pro-casp-3, cl-casp-3, GSDME, GSDME-N, PGC-1α, Bax, and cytochrome c (Cyto C). Cell proliferation, migration, invasion, and apoptosis were assessed using the cell counting kit-8 (CCK-8), wound healing assay, Transwell invasion assay, and flow cytometry, respectively. The release of lactate dehydrogenase (LDH) was evaluated using an LDH kit. SIRT1 was upregulated in HCC tissues and cells, and a negative correlation was observed between SIRT1 and GSDME-N. SIRT1 silencing suppressed the proliferation, migration, and invasion of HCC cells while also promoting apoptosis and inducing mitochondrial damage. Additionally, the silencing of SIRT1 resulted in the formation of large bubbles on the plasma membrane of HCC cells, leading to cellular swelling and aggravated GSDME-dependent pyroptosis, resulting in an increase in LDH release. Inhibition of GSDME reduced SIRT1 silencing-induced cell swelling, decreased LDH release rate, and promoted apoptosis. SIRT1 silencing promotes GSDME-dependent pyroptosis in HCC cells by damaging mitochondria.

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来源期刊
Molecular Biotechnology
Molecular Biotechnology 医学-生化与分子生物学
CiteScore
4.10
自引率
3.80%
发文量
165
审稿时长
6 months
期刊介绍: Molecular Biotechnology publishes original research papers on the application of molecular biology to both basic and applied research in the field of biotechnology. Particular areas of interest include the following: stability and expression of cloned gene products, cell transformation, gene cloning systems and the production of recombinant proteins, protein purification and analysis, transgenic species, developmental biology, mutation analysis, the applications of DNA fingerprinting, RNA interference, and PCR technology, microarray technology, proteomics, mass spectrometry, bioinformatics, plant molecular biology, microbial genetics, gene probes and the diagnosis of disease, pharmaceutical and health care products, therapeutic agents, vaccines, gene targeting, gene therapy, stem cell technology and tissue engineering, antisense technology, protein engineering and enzyme technology, monoclonal antibodies, glycobiology and glycomics, and agricultural biotechnology.
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