首页> 外文学位 >Studies of the adduction of hepatocellular proteins by 4-HNE in animal models of alcoholic liver disease: Systematic analysis of hepatocellular Erk 1/2 modulation and dysregulation of the Erk-Elk-AP1 signal transduction pathway.
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Studies of the adduction of hepatocellular proteins by 4-HNE in animal models of alcoholic liver disease: Systematic analysis of hepatocellular Erk 1/2 modulation and dysregulation of the Erk-Elk-AP1 signal transduction pathway.

机译:酒精性肝病动物模型中4-HNE加合肝细胞蛋白的研究:肝细胞Erk 1/2调节和Erk-Elk-AP1信号转导通路失调的系统分析。

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摘要

Chronic ethanol consumption results in an oxidative burden on the liver, with free radical initiators causing the peroxidation of membrane lipids and the production of reactive alpha/beta-unsaturated aldehydes including 4-hydroxynonenal (4-HNE). The hepatic accumulation of lipid aldehyde-protein adducts was demonstrated to be an early event in experimental alcoholic liver disease (ALD), facilitating the identification of novel protein targets for 4-HNE-adduction and elucidation of the biochemical consequence of 4-HNE-adduct formation with carbamoyl phosphate synthetase I (CPS-I). An additional target of 4-HNE modification identified was the extracellular-signal-regulated kinases 1 and 2 (Erk 1/2) that are implicated in many pathologic states including ALD. Sequence analyses of the Erk 1/2 proteins demonstrated these enzymes are rich in nucleophilic amino acids reactive toward 4-HNE (i.e.: His, Cys, Lys). Chronic ethanol ingestion was shown to ablate constitutive Erk 1/2 phosphorylation in rats, which corresponded with significant increases in 4-HNE-Erk adduct formation. 4-HNE adduction of Erk was confirmed in primary hepatocytes and in vitro, and adduction of Erk 1/2 was shown to inhibit kinase phosphorylation, activity, and nuclear localization in culture. Additionally, tryptic digest and mass spectral analysis of the purified, adducted Erk-2 identified a 4-HNE adduct at His 178 within the phosphorylation lip that correlated with adduction of inactive kinase monomers observed in vivo. Ultimately, adduction of Erk 1/2 by 4-HNE results in the negative modulation of constitutive signal transduction through the cFos and cJun AP-1 transcription factors. The modification of His178, which lies in the activation-lip of Erk proteins, reveals a mechanism for 4-HNE-mediated inhibition of the Erk-Elk-AP1 survival pathway in hepatocytes, corroborated by the comprehensive data presented in this dissertation. Because Erk 1/2 is central to cellular proliferation and survival, 4HNE-mediated inhibition of this kinase may impact a multitude of disease states related by oxidative stress and lipid-peroxidation, a notion that is supported by similar results obtained from hepatocytes challenged with iron ascorbate.
机译:长期摄入乙醇会导致肝脏氧化负担,自由基引发剂会引起膜脂过氧化,并产生包括4-羟基壬烯醛(4-HNE)的反应性α/β-不饱和醛。脂质醛-蛋白质加合物的肝蓄积被证明是实验性酒精性肝病(ALD)的早期事件,有助于识别4-HNE-加合物的新蛋白靶标并阐明4-HNE-加合物的生化后果用氨基甲酰基磷酸合成酶I(CPS-1)形成。确定的4-HNE修饰的另一个目标是细胞外信号调节激酶1和2(Erk 1/2),与包括ALD在内的许多病理状态有关。 Erk 1/2蛋白的序列分析表明,这些酶富含对4-HNE有反应性的亲核氨基酸(即:His,Cys,Lys)。慢性乙醇摄入显示可消除大鼠的本构性Erk 1/2磷酸化,这与4-HNE-Erk加合物形成的显着增加相对应。在原代肝细胞中和体外均证实了4-HNE Erk的内在加合,而Erk 1/2的内加可抑制培养物中激酶的磷酸化,活性和核定位。另外,对纯化的加合物Erk-2的胰蛋白酶消化和质谱分析鉴定出磷酸化唇中His 178处的4-HNE加合物与体内观察到的无活性激酶单体的加合物相关。最终,4-HNE加合Erk 1/2会导致通过cFos和cJun AP-1转录因子对本构信号转导产生负调控。 His178的修饰位于Erk蛋白的活化唇中,揭示了4-HNE介导的抑制肝细胞Erk-Elk-AP1生存途径的机制,这一点得到了本文提供的全面数据的证实。由于Erk 1/2对细胞增殖和存活至关重要,因此4HNE介导的对该激酶的抑制作用可能会影响多种与氧化应激和脂质过氧化有关的疾病状态,这一观点得到了铁质挑战的肝细胞获得的类似结果的支持抗坏血酸。

著录项

  • 作者

    Sampey, Brante P.;

  • 作者单位

    University of Colorado Health Sciences Center.;

  • 授予单位 University of Colorado Health Sciences Center.;
  • 学科 Health Sciences Toxicology.; Biology Molecular.; Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 毒物学(毒理学);分子遗传学;生物化学;
  • 关键词

  • 入库时间 2022-08-17 11:42:57

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