Feng Xiaotao, Ren Wei, Tang Yuxiang, Wen Ruyan, Duan Huiming, Yan Li
Guangxi Key Laboratory of Chinese Medicine Foundation Research, Guangxi University of Chinese Medicine, 13 Wuhe Road, Qingxiu District, Nanning 530200, China.
Guangxi Scientific Experimental Center of Traditional Chinese Medicine, Guangxi University of Chinese Medicine, 13 Wuhe Road, Qingxiu District, Nanning 530200, China.
Cell Mol Biol (Noisy-le-grand). 2022 Sep 30;68(9):68-76. doi: 10.14715/cmb/2022.68.9.11.
Chronic elevated free fatty acids (FFAs) impair pancreatic β cells, but the mechanisms remain elusive. In this study, palmitic acid (PA) impaired viability and glucose-stimulated insulin secretion of INS-1 cells. Microarray analysis showed that PA markedly altered the expression of 277 probe sets of genes with 232 upregulated and 45 downregulated (fold change ≥ 2.0 or ≤ -2.0; P < 0.05). Gene Ontology analysis displayed a series of the biological process of the differentially expressed genes, such as intrinsic apoptotic signaling pathway in response to endoplasmic reticulum (ER) stress and oxidative stress, inflammatory response, positive regulation of macroautophagy, regulation of insulin secretion, cell proliferation and cycle, fatty acid metabolic process, glucose metabolic process and so on. Kyoto Encyclopedia of Genes and Genomes analysis demonstrated molecular pathways with which the differentially expressed genes associated, including NOD-like receptor, NF-κB and PI3K-Akt signaling pathways, apoptosis, adipocytokine signaling pathway, ferroptosis, protein processing in ER, fatty acid biosynthesis and cell cycle. Moreover, PA promoted protein expression of CHOP, cleaved caspase-3, microtubule-associated proteins light chain 3 (LC3)-II, NOD-like receptor pyrin domain containing 3 (NLRP3), cleaved IL-1β and Lcn2, increased reactive oxygen species, apoptosis and the ratio of LC3-II/I, and reduced p62 protein expression, intracellular glutathione peroxidase and catalase levels, suggesting activation of ER stress, oxidative stress, autophagy and NLRP3 inflammasome. The results indicate the impaired role of PA and the global gene expression profile of INS-1 cells following PA intervention, providing new insights into the mechanisms involving the damage of pancreatic β cells by FFAs.
慢性升高的游离脂肪酸(FFAs)会损害胰腺β细胞,但其机制仍不清楚。在本研究中,棕榈酸(PA)损害了INS-1细胞的活力和葡萄糖刺激的胰岛素分泌。微阵列分析表明,PA显著改变了277个基因探针集的表达,其中232个上调,45个下调(倍数变化≥2.0或≤-2.0;P<0.05)。基因本体分析显示了一系列差异表达基因的生物学过程,如内质网(ER)应激和氧化应激反应中的内源性凋亡信号通路、炎症反应、巨自噬的正调控、胰岛素分泌的调控、细胞增殖和周期、脂肪酸代谢过程、葡萄糖代谢过程等。京都基因与基因组百科全书分析表明了差异表达基因相关的分子途径,包括NOD样受体、NF-κB和PI3K-Akt信号通路、凋亡、脂肪细胞因子信号通路、铁死亡、ER中的蛋白质加工、脂肪酸生物合成和细胞周期。此外,PA促进了CHOP、裂解的caspase-3、微管相关蛋白轻链3(LC3)-II、含NOD样受体吡咯结构域3(NLRP3)、裂解的IL-1β和Lcn2的蛋白表达,增加了活性氧、凋亡和LC3-II/I的比例,并降低了p62蛋白表达、细胞内谷胱甘肽过氧化物酶和过氧化氢酶水平,提示ER应激、氧化应激、自噬和NLRP3炎性小体的激活。结果表明了PA的损害作用以及PA干预后INS-1细胞的整体基因表达谱,为FFAs损伤胰腺β细胞的机制提供了新的见解。