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首页> 外文期刊>Toxicology and Applied Pharmacology >Mechanisms controlling the multistage post-translational processing of endogenous Nrf1 alpha/TCF11 proteins to yield distinct isoforms within the coupled positive and negative feedback circuits
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Mechanisms controlling the multistage post-translational processing of endogenous Nrf1 alpha/TCF11 proteins to yield distinct isoforms within the coupled positive and negative feedback circuits

机译:控制内源性NRF1α/ TCF11蛋白的多级翻译过程的机制,在耦合的正和负反馈电路内产生不同的异构型

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摘要

To gain a better understanding of the multistep processing of Nrf1 to yield various isoforms with confused molecular masses, we herein establish a generally acceptable criterion required for identification of its endogenous full-length proteins and derivative isoforms expressed differentially in distinct experimental cell lines. Further work has been focused on the molecular mechanisms that dictate the successive post-translational modifications (i.e. glycosylation by OST, deglycosylation by NGLY, and ubiquitination by Hrd1) of this CNC-bZIP protein and its proteolytic processing to give rise to multiple proteoforms. Several lines of experimental evidence have demonstrated that the nascent Nrf1 alpha/TCF11 polypeptide (non-glycosylated) is transiently translocated into the endoplasmic reticulum (ER), in which it becomes an inactive glycoprotein-A, and is folded in a proper topology within and around membranes. Thereafter, dynamic repositioning of the ER-resident domains in Nrf1 glycoprotein is driven by p97-fueled retrotranslocation into extra-ER compartments. Therein, Nrf1 glycoprotein is allowed for deglycosylation digestion by glycosidases into a deglycoprotein-B and its progressive proteolytic processing by cytosolic DDI-1/2 and proteasomes so as to generate N-terminally-truncated protein-C/D. This processing is accompanied by removal of a major N-terminal similar to 12.5-kDa polypeptide from Nrf1 alpha. Interestingly, our present study has further unraveled that there exist coupled positive and negative feedback circuits between Nrf1 and cognate target genes, including those encoding its regulators p97, Hrd1, DDI-1 and proteasomes. These key players are differentially or even oppositely involved in diverse cellular signaling responses to distinct extents of ER-derived proteotoxic and oxidative stresses induced by different concentrations of proteasomal inhibitors.
机译:为了更好地理解NRF1的MultiSep处理以产生具有混淆的分子量的各种同种型,我们在本文中建立了通常可接受的标准,以鉴定其内源性全长蛋白质和差异在不同的实验细胞系中表达的衍生物同种型。进一步的工作集中在该CNC-BZIP蛋白的糖基质的连续翻译后修饰(即,通过Ngly的糖基化和HRD1的泛素)的分子机制集中在该CNC-BZIP蛋白及其蛋白水解加工中产生多种蛋白质综合作用。已经证明了几条实验证据表明,新生NRF1α/ TCF11多肽(非糖基化)瞬时易流成在内质网(ER)中,其中它成为无活性的糖蛋白-A,并且在内部的适当拓扑中折叠膜周围。此后,NRF1糖蛋白中的ER居民域的动态重新定位由P97 - 燃料转回转换转移到额外的隔板中。其中,将NRF1糖蛋白通过糖苷酶进行脱糖基化消化成乙糖苷蛋白-B及其通过细胞溶质DDI-1/2和蛋白质蛋白酶的渐进式蛋白水解加工,以产生N-末端截短的蛋白-C / d。该处理伴随着从NRF1α类似于12.5kDa多肽的主要N-末端。有趣的是,我们本研究进一步解开了NRF1和同源靶基因之间存在耦合的正面和负反馈电路,包括编码其调节剂P97,HRD1,DDI-1和蛋白质蛋白酶的反馈电路。这些关键球员差异或甚至相反地参与不同浓度的蛋白酶体抑制剂诱导的ER衍生的蛋白毒性和氧化应力的不同植物的不同观​​点。

著录项

  • 来源
    《Toxicology and Applied Pharmacology》 |2018年第2018期|共24页
  • 作者单位

    Chongqing Univ Coll Bioengn Lab Cell Biochem &

    Topogenet Regulat 174 Shazheng St Chongqing;

    Chongqing Univ Coll Bioengn Lab Cell Biochem &

    Topogenet Regulat 174 Shazheng St Chongqing;

    Chongqing Univ Coll Bioengn Lab Cell Biochem &

    Topogenet Regulat 174 Shazheng St Chongqing;

    Chongqing Univ Coll Bioengn Lab Cell Biochem &

    Topogenet Regulat 174 Shazheng St Chongqing;

    Chongqing Univ Coll Bioengn Lab Cell Biochem &

    Topogenet Regulat 174 Shazheng St Chongqing;

    Univ Glasgow Sch Life Sci Inst Neurosci &

    Psychol 42 Western Common Rd Glasgow G22 SPQ Lanark;

    Peking Univ Hlth Sci Ctr Sch Pharmaceut Sci State Key Lab Nat &

    Biomimet Drugs 38 Xueyuan Rd;

    China Med Univ Sch Publ Hlth 77 Puhe Rd Shenyang 110122 Liaoning Peoples R China;

    Chongqing Univ Coll Bioengn Lab Cell Biochem &

    Topogenet Regulat 174 Shazheng St Chongqing;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 毒物学(毒理学);
  • 关键词

    Nrf1; DDI-1/2; p97; Proteoform; Proteasome; Post-Translational Modification; Proteolysis; ER Stress; Hrd1;

    机译:NRF1;DDI-1/2;p97;蛋白质om6;蛋白质组;翻译后修饰;蛋白水解;呃压力;HRD1;

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