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Identification and quantification of the basal and inducible Nrf2-dependent proteomes in mouse liver: Biochemical pharmacological and toxicological implications

机译:小鼠肝脏中基础和诱导型Nrf2依赖性蛋白质组的鉴定和定量:生化药理和毒理学意义

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摘要

The transcription factor Nrf2 is a master regulator of cellular defence: Nrf2 null mice (Nrf2(−/−)) are highly susceptible to chemically induced toxicities. We report a comparative iTRAQ-based study in Nrf2(−/−) mice treated with a potent inducer, methyl-2-cyano-3,12-dioxooleana-1,9(11)dien-28-oate (CDDO-me; bardoxolone -methyl), to define both the Nrf2-dependent basal and inducible hepatoproteomes. One thousand five hundred twenty-one proteins were fully quantified (FDR < 1%). One hundred sixty-one were significantly different (P < 0.05) between WT and Nrf2(−/−) mice, confirming extensive constitutive regulation by Nrf2. Treatment with CDDO-me (3 mg/kg; i.p.) resulted in significantly altered expression of 43 proteins at 24 h in WT animals. Six proteins were regulated at both basal and inducible levels exhibiting the largest dynamic range of Nrf2 regulation: cytochrome P4502A5 (CYP2A5; 17.2-fold), glutathione-S-transferase-Mu 3 (GSTM3; 6.4-fold), glutathione-S-transferase Mu 1 (GSTM1; 5.9-fold), ectonucleoside-triphosphate diphosphohydrolase (ENTPD5; 4.6-fold), UDP-glucose-6-dehydrogenase (UDPGDH; 4.1-fold) and epoxide hydrolase (EPHX1; 3.0-fold). These proteins, or their products, thus provide a potential source of biomarkers for Nrf2 activity. ENTPD5 is of interest due to its emerging role in AKT signalling and, to our knowledge, this protein has not been previously shown to be Nrf2-dependent. Only two proteins altered by CDDO-me in WT animals were similarly affected in Nrf2(−/−) mice, demonstrating the high degree of selectivity of CDDO-me for the Nrf2:Keap1 signalling pathway.
机译:转录因子Nrf2是细胞防御的主要调控因子:Nrf2缺失小鼠(Nrf2 (-/-))对化学诱导的毒性非常敏感。我们报告了基于iTRAQ的比较研究,该研究在用强力诱导剂methyl-2-cyano-3,12-dioxooleana-1,9(11)dien-28处理的Nrf2 (-/-)小鼠中进行-oate(CDDO-me; bardoxolone -methyl),以定义依赖Nrf2的基础和可诱导的肝细胞因子。充分定量了151种蛋白质(FDR <1%)。 WT和Nrf2 (-/-)小鼠之间有161个显着差异(P <0.05),证实了Nrf2的广泛组成性调控。用CDDO-me(3 mg / kg; i.p.)处理后,野生动物在24 h时43种蛋白质的表达发生了显着改变。六个蛋白在基础水平和诱导水平上均得到调节,表现出最大的Nrf2调节动态范围:细胞色素P4502A5(CYP2A5; 17.2倍),谷胱甘肽S-转移酶-Mu 3(GSTM3; 6.4倍),谷胱甘肽S-转移酶Mu 1(GSTM1; 5.9倍),外核苷三磷酸二磷酸水解酶(ENTPD5; 4.6倍),UDP-葡萄糖-6-脱氢酶(UDPGDH; 4.1倍)和环氧水解酶(EPHX1; 3.0倍)。这些蛋白质或其产物因此为Nrf2活性提供了潜在的生物标志物来源。 ENTPD5因其在AKT信号传导中的新兴作用而引起人们的关注,据我们所知,该蛋白先前尚未显示为Nrf2依赖性的。在Nrf2 (-/-)小鼠中,只有两种CDDO-me改变了野生动物中的蛋白质,这表明CDDO-me对Nrf2:Keap1信号通路的选择性很高。

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