Mohan Sreelekshmi, Nair Anupama, Poornima M S, Raghu K G
Biochemistry and Molecular Mechanism Laboratory, Agro-processing and Technology Division, Council of Scientific and Industrial Research (CSIR) - National Institute for Interdisciplinary Science and Technology (NIIST), Thiruvananthapuram, 695019, Kerala, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
Biochemistry and Molecular Mechanism Laboratory, Agro-processing and Technology Division, Council of Scientific and Industrial Research (CSIR) - National Institute for Interdisciplinary Science and Technology (NIIST), Thiruvananthapuram, 695019, Kerala, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
Chem Biol Interact. 2023 Apr 25;375:110365. doi: 10.1016/j.cbi.2023.110365. Epub 2023 Feb 8.
Hyperinsulinemia (HI) induced insulin resistance (IR) and associated pathologies are the burning and unsolvable issues in diabetes treatment. The cellular, molecular and biochemical events associated with HI are not yet elucidated. Similarly, no focused research on designing therapeutic strategies with natural products for attenuation of HI are seen in literature. Keeping this in mind we planned the present study to evaluate the alterations occurring at ER/Ca homeostasis/mitochondria associated endoplasmic reticulum membranes (MAMs) in HepG2 cells during HI and to evaluate the possible beneficial effect of vanillic acid (VA) to mitigate the complications. An in vitro model of HI was established by treating HepG2 cells with human insulin (1 μM) for 24 h. Then, ER stress, Ca homeostasis, MAMs, IR and hepatic lipogenesis were studied at protein level. Various proteins critical to ER, Ca homeostasis and MAMs such as p-IRE-1α, ATF6, p-PERK, p-eIF2α, CHOP, XBP1, p-CAMKII, InsP3R, SERCA, JNK, GRP78, VDAC, Cyp D, GRP75, MFN2, PTEN and mTORC were studied and found altered significantly causing ER stress, defect in Ca movements and distortion of MAMs. The decreased expression of IRS2 and an unaltered expression of IRS1 confirmed the development of selective insulin resistance in hepatocytes during HI and this was the crucial factor for the progression of the hepatic lipid accumulation. We found simultaneous treatment of VA is beneficial up to a certain extent to protect HepG2 cells from the adverse effect of HI via its antioxidant, antilipogenic, mitochondrial and ER protection properties.
高胰岛素血症(HI)诱发的胰岛素抵抗(IR)及相关病理状况是糖尿病治疗中亟待解决的棘手问题。与HI相关的细胞、分子和生化事件尚未阐明。同样,文献中也未见针对利用天然产物设计治疗策略以减轻HI的重点研究。鉴于此,我们开展了本研究,以评估HI期间HepG2细胞内质网/钙稳态/线粒体相关内质网膜(MAMs)发生的变化,并评估香草酸(VA)减轻这些并发症的潜在有益作用。通过用人胰岛素(1 μM)处理HepG2细胞24小时建立HI体外模型。然后,在蛋白质水平研究内质网应激、钙稳态、MAMs、IR和肝脏脂肪生成。研究了内质网、钙稳态和MAMs的各种关键蛋白,如p-IRE-1α、ATF6、p-PERK、p-eIF2α、CHOP、XBP1、p-CAMKII、InsP3R、SERCA、JNK、GRP78、VDAC、Cyp D、GRP75、MFN2、PTEN和mTORC,发现它们发生了显著改变,导致内质网应激、钙转运缺陷和MAMs扭曲。IRS2表达降低和IRS1表达未改变证实了HI期间肝细胞中选择性胰岛素抵抗的发展,这是肝脏脂质积累进展的关键因素。我们发现同时给予VA在一定程度上有益,可通过其抗氧化、抗脂肪生成、线粒体和内质网保护特性保护HepG2细胞免受HI的不利影响。