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谷胱甘肽-S-转移酶P影响斑马鱼的氧化还原稳态及对诱导未折叠蛋白反应的药物的反应。

Glutathione -Transferase P Influences Redox Homeostasis and Response to Drugs that Induce the Unfolded Protein Response in Zebrafish.

作者信息

Zhang Leilei, Kim Seok-Hyung, Park Ki-Hoon, Zhi-Wei Ye, Jie Zhang, Townsend Danyelle M, Tew Kenneth D

机构信息

Leilei Zhang, Seok-Hyung Kim, Ki-Hoon Park, Zhi-wei Ye, Jie Zhang, Danyelle M. Townsend, Kenneth D. Tew Department of Cell and Molecular Pharmacology and Experimental Therapeutics (L.Z., Z.Y., J.Z., K.D.T.), Division of Nephrology, Department of Medicine (S.-H.K., K.-H.P.), and Department of Pharmaceutical and Biomedical Sciences (D.M.T.), Medical University of South Carolina, Charleston, South Carolina.

Leilei Zhang, Seok-Hyung Kim, Ki-Hoon Park, Zhi-wei Ye, Jie Zhang, Danyelle M. Townsend, Kenneth D. Tew Department of Cell and Molecular Pharmacology and Experimental Therapeutics (L.Z., Z.Y., J.Z., K.D.T.), Division of Nephrology, Department of Medicine (S.-H.K., K.-H.P.), and Department of Pharmaceutical and Biomedical Sciences (D.M.T.), Medical University of South Carolina, Charleston, South Carolina

出版信息

J Pharmacol Exp Ther. 2021 Apr;377(1):121-132. doi: 10.1124/jpet.120.000417. Epub 2021 Jan 29.

Abstract

We have created a novel glutathione -transferase 1 () knockout (KO) zebrafish model and used it for comparative analyses of redox homeostasis and response to drugs that cause endoplasmic reticulum (ER) stress and induce the unfolded protein response (UPR). Under basal conditions, KO larvae had higher expression of antioxidant nuclear factor erythroid 2-related factor 2 (Nrf2) accompanied by a more reduced larval environment and a status consistent with reductive stress. Compared with wild type, various UPR markers were decreased in KO larvae, but treatment with drugs that induce ER stress caused greater toxicities and increased expression of Nrf2 and UPR markers in KO. Tunicamycin and 0-{2,4-dinitro-5-[4-(-methylamino)benzoyloxy]phenyl}1-(,-dimethylamino)diazen-1-ium-1,2-diolate (PABA/nitric oxide) activated inositol-requiring protein-1/X-box binding protein 1 pathways, whereas thapsigargin caused greater activation of protein kinase-like ER kinase/activating transcription factor 4/CHOP pathways. These results suggest that this teleost model is useful for predicting how GSTP regulates organismal management of oxidative/reductive stress and is a determinant of response to drug-induced ER stress and the UPR. SIGNIFICANCE STATEMENT: A new zebrafish model has been created to study the importance of glutathione transferase 1 in development, redox homeostasis, and response to drugs that enact cytotoxicity through endoplasmic reticulum stress and induction of the unfolded protein response.

摘要

我们构建了一种新型谷胱甘肽-S-转移酶1(GSTP1)基因敲除(KO)斑马鱼模型,并将其用于氧化还原稳态的比较分析以及对引起内质网(ER)应激并诱导未折叠蛋白反应(UPR)的药物的反应研究。在基础条件下,GSTP1 KO幼虫中抗氧化剂核因子红系2相关因子2(Nrf2)的表达较高,同时幼虫环境的还原性更强,处于与还原应激一致的状态。与野生型相比,GSTP1 KO幼虫中各种UPR标志物减少,但用诱导ER应激的药物处理会导致更大的毒性,并增加GSTP1 KO中Nrf2和UPR标志物的表达。衣霉素和0-{2,4-二硝基-5-[4-(N-甲基氨基)苯甲酰氧基]苯基}1-(N,N-二甲基氨基)重氮-1,2-二醇盐(PABA/NO)激活了肌醇需求蛋白1/X盒结合蛋白1途径,而毒胡萝卜素则导致蛋白激酶样ER激酶/激活转录因子4/CHOP途径的更大激活。这些结果表明,这种硬骨鱼模型可用于预测GSTP如何调节生物体对氧化/还原应激的管理,并且是对药物诱导的ER应激和UPR反应的决定因素。意义声明:已创建一种新的斑马鱼模型,以研究谷胱甘肽转移酶1在发育、氧化还原稳态以及对内质网应激和诱导未折叠蛋白反应而产生细胞毒性的药物的反应中的重要性。

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