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相关概念视频

Regulation of the Unfolded Protein Response01:31

Regulation of the Unfolded Protein Response

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Inositol-requiring kinase one or IRE1 is the most conserved eukaryotic unfolded protein response (UPR) receptor. It is a type I transmembrane protein kinase receptor with a distinctive site-specific RNase activity. As the binding mechanics of the misfolded proteins with the N-terminal domain of IRE-1 are unclear, three binding models — direct, indirect, and allosteric -- are proposed for receptor activation. Nevertheless, it is known that once a misfolded protein associates with IRE1, it...
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The Unfolded Protein Response01:37

The Unfolded Protein Response

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The ER is the hub of protein synthesis in a cell. It has robust systems to quality control protein folding and also for degradation of terminally misfolded proteins. Under normal conditions, a small proportion of misfolded proteins that cannot be salvaged need to be transported to the cytoplasm by the ER-associated degradation or ERAD pathways. However, if the ERAD cannot handle the misfolded proteins, the cell activates the unfolded protein response or UPR to adjust the protein folding...
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Role of Ephrin-Eph Signalling in Intestinal Stem Cell Renewal01:22

Role of Ephrin-Eph Signalling in Intestinal Stem Cell Renewal

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Erythropoietin-producing hepatocellular carcinoma receptor (Eph) and its ligand, Eph receptor-interacting protein (Ephrin) were first discovered in the human carcinoma cell line, hence the name. Ephrin-Eph interaction guides cells to reach their appropriate location in adult tissues. They also play an essential role in the immune system by helping in immune cell migration, adhesion, and activation. Based on their structure and function, Eph is divided into two classes — EphA and EphB.
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Role of ER in the Secretory Pathway01:17

Role of ER in the Secretory Pathway

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Eukaryotic cells have a special pathway that enables communication between various intracellular membrane-bound compartments and also with the extracellular environment. This pathway is termed as the secretory pathway.
Components of the secretory pathway
About a third of proteins synthesized in the cell are sorted via the secretory route. They shuffle between different compartments in membrane-bound vesicles until they reach their final destination. The main intracellular compartments involved...
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Physiological Foundation of Stress01:24

Physiological Foundation of Stress

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Stress triggers a coordinated physiological response involving the sympathetic nervous system (SNS) and the hypothalamic-pituitary-adrenal (HPA) axis. This dual activation ensures that the body is prepared for both immediate and prolonged stress management. The process begins with the perception of a stressor. This initial phase activates the SNS, leading to the rapid release of adrenaline (epinephrine) from the adrenal glands.
Role of the Sympathetic Nervous System
Adrenaline triggers the...
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Transcription Elongation Factors02:35

Transcription Elongation Factors

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Transcription elongation is a dynamic process that alters depending upon the sequence heterogeneity of the DNA being transcribed. Hence, it is not surprising that the elongation complex's composition also varies along the way while transcribing a gene.
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相关实验视频

Updated: Jun 24, 2025

Monitoring eIF4F Assembly by Measuring eIF4E-eIF4G Interaction in Live Cells
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Monitoring eIF4F Assembly by Measuring eIF4E-eIF4G Interaction in Live Cells

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eIF4E可以整合到应激反应中.

Xincheng Wu1, Shu-Bing Qian1

  • 1Division of Nutritional Sciences, Cornell University, Ithaca, NY, USA.

Molecular cell
|June 7, 2024
PubMed
概括

欧核细胞启动因子4E (eIF4E) 的耗尽可独立于eIF2α酸化,对GCN4的翻译进行上调. 这揭示了细胞应激反应中翻译适应的新机制.

科学领域:

  • 分子生物学分子生物学
  • 细胞生物学 细胞生物学
  • 生物化学 生物化学

背景情况:

  • 综合应激反应 (ISR) 对于细胞适应应激至关重要.
  • 翻译法规在ISR中发挥着关键作用.
  • GCN4是ISR通路中的一个中心转录因子.

研究的目的:

  • 调查真核细胞启动因子4E (eIF4E) 在GCN4翻译中的作用.
  • 阐明GCN4.4转化上调的机制.
  • 为了确定新的转化适应模式.

主要方法:

  • 调查eIF4E耗尽对GCN4mRNA翻译的影响.
  • 在eIF4E耗尽的条件下分析eIF2α的酸化状态.
  • 利用分子生物学技术研究蛋白质合成和基因表达.

主要成果:

  • eIF4E的耗尽导致GCN4.4的显著翻译上调.
  • 这种上调是独立于eIF2α酸化发生的.
  • 这表明了在压力期间控制蛋白质合成的新途径.

结论:

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  • eIF4E在调节GCN4翻译方面发挥着至关重要的作用.
  • 存在一种新的转化适应模式,可以绕过eIF2α酸化.
  • 这些发现为综合应激反应提供了新的见解.