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相关概念视频

Mitochondria01:37

Mitochondria

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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,...
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Mitochondrial Membranes01:45

Mitochondrial Membranes

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A single mitochondrion is a bean-shaped organelle enclosed by a double-membrane system. The outer membrane of mitochondria is smooth and contains many porins - the integral membrane transporters. Porins enable free diffusion of ions and small uncharged molecules through the outer mitochondrial membrane but limit the transport of molecules larger than 5000 Daltons. Further, the outer mitochondrial membrane forms a unique structure called membrane contact sites with other subcellular organelles,...
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The Inner Mitochondrial Membrane01:28

The Inner Mitochondrial Membrane

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The inner mitochondrial membrane is the primary site of ATP synthesis. The inner membrane domain that forms a smooth layer adjacent to the outer membrane is called the inner boundary membrane. This domain contains membrane transporters that drive metabolites in and out of the mitochondria.  In contrast, the inner membrane network that invaginates into the matrix space is called the cristae membrane. This domain accounts for principle mitochondrial function as it accommodates the protein...
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Translocation of Proteins into the Mitochondria01:19

Translocation of Proteins into the Mitochondria

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Mitochondrial precursors are translocated to the internal subcompartments via independent mechanisms involving distinct protein machineries called translocases.
Sorting of outer membrane proteins:
Mitochondrial outer membrane proteins are of two types: the transmembrane, beta-barrel porins, and the membrane-anchored, alpha-helical proteins. Beta-barrel porin precursors are translocated by the TOM complex and inserted into the outer mitochondrial membrane by the SAM complex. In contrast,...
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Animal Mitochondrial Genetics02:59

Animal Mitochondrial Genetics

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Among all the organelles in an animal cell, only mitochondria have their own independent genomes. Animal mitochondrial DNA is a double-stranded, closed-circular molecule with around 20,000 base pairs. Mitochondrial DNA is unique in that one of its two strands, the heavy, or H, -strand is guanine rich, whereas the complementary strand is cytosine rich and called the light, or L, -strand. Compared to nuclear DNA, mitochondrial DNA has a very low percentage of non-coding regions and is marked by...
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Cells of the Innate Immune Response01:28

Cells of the Innate Immune Response

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The innate immune response is an immediate and non-specific response against pathogens, acting swiftly to prevent the spread of infections. The primary cells involved in this response are phagocytes and natural killer (NK) cells.
Phagocytes
Phagocytes police the peripheral tissues by removing cellular debris and responding to the invasion of foreign substances or pathogens. Many phagocytes attack and remove microorganisms even before lymphocytes detect them. The human body has two general...
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相关实验视频

Updated: Jun 25, 2025

Real-Time Measurement of the Mitochondrial Bioenergetic Profile of Neutrophils
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Real-Time Measurement of the Mitochondrial Bioenergetic Profile of Neutrophils

Published on: June 2, 2023

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在天生的免疫力中的多面性线粒体.

Eloïse Marques1, Robbin Kramer1, Dylan G Ryan1

  • 1MRC Mitochondrial Biology Unit, University of Cambridge, Cambridge, UK.

npj metabolic health and disease
|May 30, 2024
PubMed
概括
此摘要是机器生成的。

线粒体对免疫力至关重要,不仅仅是能量生产,影响先天性免疫细胞功能. 了解线粒体在炎症和防御中的作用为免疫疾病提供了新的治疗途径.

关键词:
能量代谢 能量代谢线粒体中的线粒体.

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相关实验视频

Last Updated: Jun 25, 2025

Real-Time Measurement of the Mitochondrial Bioenergetic Profile of Neutrophils
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Real-Time Measurement of the Mitochondrial Bioenergetic Profile of Neutrophils

Published on: June 2, 2023

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科学领域:

  • 免疫学 免疫学 免疫学
  • 细胞生物学 细胞生物学
  • 线粒体生物学 线粒体生物学

背景情况:

  • 线粒体传统上以能量生产 (酸化潜力) 闻名.
  • 新兴的角色突出显示线粒体是免疫系统中关键的信号传导器官.
  • 线粒体具有来自内共生源的细菌动图,被天生的免疫细胞识别.

研究的目的:

  • 审查线粒体生理学如何影响 fagocyte 效应器功能.
  • 探索涉及线粒体核酸,代谢物和免疫中的脂质的信号通路.
  • 为了将线粒体的作用与巨细胞极化,细胞分裂和细胞因子调节联系起来.

主要方法:

  • 文献综述侧重于线粒体生理学和先天免疫力.
  • 氧化酸化 (OxPhos) 和线粒体信号通路的分析.
  • 检查线粒体对细胞效应器功能的影响.

主要成果:

  • 线粒体的功能超越了生物能学,到关键的免疫信号传递.
  • 线粒体成分 (核酸,代谢物,脂质) 调节免疫反应.
  • 线粒体过程的失调有助于疾病和伤害.

结论:

  • 线粒体在天生的免疫系统效应器功能中发挥着中心作用.
  • 了解这些作用可以为炎症性疾病的新疗法策略提供信息.
  • 线粒体信号传递对于维持生物体平衡至关重要.