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Cross-Regulations among NRFs and KEAP1 and Effects of their Silencing on Arsenic-Induced Antioxidant Response and Cytotoxicity in Human Keratinocytes

机译:NRFS和Keap1之间的跨法规以及它们在人角蛋白酶细胞中诱发砷诱导的抗氧化反应和细胞毒性的影响

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Background: Nuclear factor E2-related factors (NRFs), including NRF2 and NRF1, play critical roles in mediating the cellular adaptive response to oxidative stress. Human exposure to inorganic arsenic, a potent oxidative stressor, causes various dermal disorders, including hyperkeratosis and skin cancer. Objective: We investigated the cross-regulations among NRF2, NRF1, and KEAP1, a cullin-3–adapter protein that allows NRF2 to be ubiquinated and degraded by the proteasome complex, in arsenic-induced antioxidant responses. Results: In human keratinocyte HaCaT cells, selective knockdown (KD) of NRF2 by lentiviral short hairpin RNAs (shRNAs) significantly reduced the expression of many antioxidant enzymes and sensitized the cells to acute cytotoxicity of inorganic arsenite (iAs3+). In contrast, silencing KEAP1 led to a dramatic resistance to iAs3+-induced apoptosis. Pretreatment of HaCaT cells with NRF2 activators, such as tert -butylhydroquinone, protects the cells against acute iAs3+ toxicity in an NRF2-dependent fashion. Consistent with the negative regulatory role of KEAP1 in NRF2 activation, KEAP1 -KD cells exhibited enhanced transcriptional activity of NRF2 under nonstressed conditions. However, deficiency in KEAP1 did not facilitate induction of NRF2-target genes by iAs3+. In addition, NRF2 silencing reduced the expression of KEAP1 at transcription and protein levels but increased the protein expression of NRF1 under the iAs3+-exposed condition. In contrast, silencing KEAP1 augmented protein accumulation of NRF2 under basal and iAs3+-exposed conditions, whereas the iAs3+-induced protein accumulation of NRF1 was attenuated in KEAP1 -KD cells. Conclusions: Our studies suggest that NRF2, KEAP1, and NRF1 are coordinately involved in the regulation of the cellular adaptive response to iAs3+-induced oxidative stress.
机译:背景:核因子E2相关因子(NRF),包括NRF2和NRF1,在介导对氧化应激的细胞适应性反应中起重要作用。人类暴露于无机砷,一种有效的氧化应激源,导致各种皮肤疾病,包括高表带和皮肤癌。目的:我们研究了NRF2,NRF1和Keap1中的跨规则,允许NRF2待萎缩并通过蛋白酶体复合物中的抗氧化反应中萎缩并降解。结果:在人角蛋白细胞HaCaT细胞中,慢病毒短发夹RNA(SHRNA)的NRF2的选择性敲低(KD)显着降低了许多抗氧化酶的表达,并使细胞敏感到无机砷酸的急性细胞毒性(IAS 3 + / )。相比之下,沉默的Keap1导致对IAS 3 + 诱导的细胞凋亡的显着抗性。用NRF 2活化剂的热预处理,例如叔丁基羟基醌,以NRF2依赖性方式保护细胞免受急性IAS 3 + / sup>毒性。符合Keap1在NRF2活化中的阴性调节作用,Keap1 -KD细胞在非经常条件下表现出NRF2的增强的转录活性。然而,Keap1的缺乏不促进IAS 3 + / sup>的NRF2-靶基因的诱导。此外,NRF2沉默在转录和蛋白质水平下降低了Keap1的表达,但增加了NRF1在IAS 3 + - 散装条件下的蛋白质表达。相比之下,在基础和IAS 3 + - 散装条件下,沉默的Keap1增强蛋白质积累,而IAS 3 + 诱导NRF1的蛋白质积累在keap1中衰减 - KD细胞。结论:我们的研究表明NRF2,KeAP1和NRF1与IAS 3 + 诱导的氧化应激的细胞适应性反应的调节相同。

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