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相关概念视频

Mitochondria01:37

Mitochondria

Mitochondria are eukaryotic cellular organelles that are known to produce energy through a process called oxidative phosphorylation. Besides their primary function, mitochondria are involved in various cellular processes, including cell growth, differentiation, signaling, metabolism, and senescence. Age-related changes cause a decline in mitochondrial quality and integrity due to increased mitochondrial mutations and oxidative damage. Thus, aging can severely impact mitochondrial functions,...
Exon Recombination02:32

Exon Recombination

The evolution of new genes is critical for speciation. Exon recombination, also known as exon shuffling or domain shuffling, is an important means of new gene formation. It is observed across vertebrates, invertebrates, and in some plants such as potatoes and sunflowers. During exon recombination, exons from the same or different genes recombine and produce new exon-intron combinations, which might evolve into new genes. 
Exon shuffling follows “splice frame rules.” Each exon has three reading...
Replicative Cell Senescence02:15

Replicative Cell Senescence

Replicative cell senescence is a property of cells that allows them to divide a finite number of times throughout the organism's lifespan while preventing excessive proliferation. Replicative senescence is associated with the gradual loss of the telomere — short, repetitive DNA sequences found at the end of the chromosomes. Telomeres are bound by a group of proteins to form a protective cap on the ends of chromosomes. Embryonic stem cells express telomerase — an enzyme that adds the telomeric...
Replicative Cell Senescence02:15

Replicative Cell Senescence

Replicative cell senescence is a property of cells that allows them to divide a finite number of times throughout the organism's lifespan while preventing excessive proliferation. Replicative senescence is associated with the gradual loss of the telomere — short, repetitive DNA sequences found at the end of the chromosomes. Telomeres are bound by a group of proteins to form a protective cap on the ends of chromosomes. Embryonic stem cells express telomerase — an enzyme that adds the telomeric...

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相关实验视频

Updated: May 11, 2026

The Replica Set Method: A High-throughput Approach to Quantitatively Measure Caenorhabditis elegans Lifespan
11:58

The Replica Set Method: A High-throughput Approach to Quantitatively Measure Caenorhabditis elegans Lifespan

Published on: June 29, 2018

一种新的DAF-16异型调节长寿.

Eun-Soo Kwon1, Sri Devi Narasimhan, Kelvin Yen

  • 1Program in Gene Function and Expression, University of Massachusetts Medical School, Worcester, Massachusetts 01605, USA.

Nature
|July 9, 2010
PubMed
概括

胰岛素/IGF-1信号通路使用不同的DAF-16异型来控制C. elegans的寿命和应激反应. 这些异构体合作,对生物过程进行微调调节.

科学领域:

  • 分子生物学分子生物学
  • 遗传学 是一个遗传学.
  • 衰老研究研究 衰老研究

背景情况:

  • 胰岛素/IGF-1信号传递 (IIS) 途径调节基本的生物过程,包括新陈代谢和寿命.
  • DAF-16,唯一的Caenorhabditis elegans分叉盒O (FOXO) 转录因子的同类物,是IIS的一个关键调解者.
  • 虽然已知DAF-16a异型会影响长寿,应激反应和时间隔离,但DAF-16的功能特异性背后的机制仍然不完全理解.

研究的目的:

  • 识别和描述涉及IIS介导过程的新型DAF-16异型.
  • 阐明不同的DAF-16异型在调节各种生物结果时如何实现功能特异性.
  • 研究不同DAF-16异型的合作机制和监管作用.

主要方法:

  • 鉴定了一种新的DAF-16异型,DAF-16d/f.
  • 分析DAF-16异型之间的功能合作.
  • 对异构体的差异性组织丰富和激酶调制的评估.
  • 检查不同的和重叠的目标基因调节.
  • 主办方交换实验,以评估主办方和编码区域的贡献.

主要成果:

  • 一种新型异构体,DAF-16d/f,被确定并被证明对长寿调节很重要.

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Label-Free Imaging of Lipid Storage Dynamics in Caenorhabditis elegans using Stimulated Raman Scattering Microscopy
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Label-Free Imaging of Lipid Storage Dynamics in Caenorhabditis elegans using Stimulated Raman Scattering Microscopy

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Lipid Supplementation for Longevity and Gene Transcriptional Analysis in Caenorhabditis elegans
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Lipid Supplementation for Longevity and Gene Transcriptional Analysis in Caenorhabditis elegans

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The Replica Set Method: A High-throughput Approach to Quantitatively Measure Caenorhabditis elegans Lifespan
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Published on: June 29, 2018

Label-Free Imaging of Lipid Storage Dynamics in Caenorhabditis elegans using Stimulated Raman Scattering Microscopy
10:59

Label-Free Imaging of Lipid Storage Dynamics in Caenorhabditis elegans using Stimulated Raman Scattering Microscopy

Published on: May 28, 2021

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Lipid Supplementation for Longevity and Gene Transcriptional Analysis in Caenorhabditis elegans

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  • DAF-16 异型形式在功能上合作,调节 IIS 介导的过程.
  • 异构体表现出差异性的组织丰富,上游激酶的优先调节,并调节不同的/重叠的基因.
  • DAF-16的促进器和编码区域都对其功能至关重要.
  • 结论:

    • 独特的DAF-16异形在C. elegans中,类似于哺乳动物中的多个FOXO基因,利用异形特异性机制来微调IIS介导的过程.
    • 功能合作和DAF-16异构体的差异调节提供了一种在复杂的生物途径中实现特异性的机制.
    • 了解异形特异性功能对于理解IIS途径在衰老和应激反应中的多面性作用至关重要.