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相关概念视频

Stress Response System01:21

Stress Response System

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The stress response system, also known as the fight-or-flight response, is the body's automatic physiological reaction to perceived threats. Hans Selye introduced the concept of General Adaptation Syndrome (GAS) to describe the predictable pattern of changes that occur in response to stress. GAS consists of three sequential stages: alarm, resistance, and exhaustion. This model helps explain how chronic stress can contribute to health problems.
Alarm stage
In the alarm stage, the body's...
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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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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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Stress Concentrations01:13

Stress Concentrations

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The concept of stress concentration is crucial for understanding how materials respond under bending stresses, particularly when there are irregularities or discontinuities in the material's geometry. Normally, stress in a symmetric member subjected to pure bending is assumed to be uniformly distributed across the entire cross-section. However, this assumption does not hold when there are variations in the cross-sectional geometry or the presence of notches and holes.
The stress...
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Stress: General Loading Conditions01:15

Stress: General Loading Conditions

333
To grasp the intricacy of real-world conditions where multiple loads are applied simultaneously to a structure, one might visualize a section passing through a specific point within a body, aligned parallel to the xy plane. This section is subjected to various forces, including original loads, normal forces, and shearing forces.
The shearing force, possessing potential directionality within the plane of the section, is simplified into two component forces running parallel to the x and y axes....
333
Stringent Response in E. coli01:23

Stringent Response in E. coli

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Bacterial growth is closely tied to nutrient availability, with cells proliferating exponentially under favorable conditions and entering a stationary phase when resources become scarce. This transition is mediated by a regulatory mechanism known as the stringent response, which allows bacteria to adapt to nutrient deprivation by modulating gene expression and metabolic activity.During nutrient scarcity, intracellular amino acid levels decline. It results in the accumulation of uncharged tRNAs...
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Measurements of Physiological Stress Responses in C. Elegans
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eIF3d控制了持久的综合应激反应.

Shaoni Mukhopadhyay1, Maria E Amodeo1, Amy S Y Lee1

  • 1Department of Cell Biology, Harvard Medical School, Boston, MA 02215, USA; Department of Cancer Immunology and Virology, Dana-Farber Cancer Institute, Boston, MA 02215, USA.

Molecular cell
|September 8, 2023
PubMed
概括

综合应激反应 (ISR) 依赖eIF3d,eIF3d是一种控制关键压力因素的蛋白质. eIF3d通过调节蛋白质合成和基因表达来协调慢性压力期间的细胞生存.

科学领域:

  • 细胞生物学 细胞生物学
  • 分子生物学分子生物学
  • 应激反应机制 应激反应机制

背景情况:

  • 细胞激活生存途径,包括综合应激反应 (ISR),以应对内在和外在的压力.
  • 该ISR涉及减少全球蛋白质合成和特定基因程序的激活.

研究的目的:

  • 阐明非正规封顶结合蛋白eIF3d在驱动ISR中的作用.
  • 确定eIF3d如何控制关键应激反应因素,如eIF2α和ATF4.4.

主要方法:

  • 在细胞应激模型中研究了eIF3d的功能.
  • 分析了eIF3d对翻译因子 (eIF2α,GCN2) 和转录因子 (ATF4) 的影响.
  • 研究了ALKBH5对mRNA脱甲基化的调节及其对应激反应基因的影响.

主要成果:

  • eIF3d激活GCN2翻译,导致eIF2α酸化和在持续的压力下抑制一般蛋白质合成.
  • eIF3d上调ALKBH5,促进5' UTR特异性去甲基化压力基因,如ATF4.
  • 这种级联通过改善uORFs的mRNA参与和核糖体绕道来增强ATF4表达.

结论:

关键词:
在ATF4中使用ATF4.在 GCN2 中.通过RNA甲基化.在eIF3d中,eIF3d是eIF3d.综合应激反应综合应激反应m(6) A6) 一个翻译法规 翻译法规

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  • eIF3d在ISR中起到关键作用,控制翻译和转录.
  • 在慢性压力期间,eIF3d在一个关键的决策点上起作用,平衡细胞生存.
  • 一个涉及翻译和转录调节的协同机制放大了细胞对压力的反应.