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相关概念视频

Mitochondrial Membranes01:45

Mitochondrial Membranes

17.6K
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,...
17.6K
Structure of Porins01:21

Structure of Porins

4.1K
Mitochondria, chloroplasts, and gram-negative bacteria have transmembrane, beta-barrel proteins called porins to mediate the free diffusion of ions and metabolites across the membrane. Mitochondrial porin precursors contain conserved amino acid sequences called beta signals at their C-terminal. Beta signals have a  motif of PoXGXXHyXHy (Po-Polar, X-Any amino acid, G-Glycine, Hy-LargeHydrophobic), which are crucial for precursor recognition to initiate precursor assembly. Beta-barrel...
4.1K
Porin Insertion in the Outer Mitochondrial Membrane01:12

Porin Insertion in the Outer Mitochondrial Membrane

5.1K
Porins are beta-barrel proteins translocated to the mitochondrial outer membrane through the TOM complex into the intermembrane space. Porin precursors bind TIM chaperones within the intermembrane space and are guided to the Sorting and Assembly Machinery complex or SAM complex on the outer mitochondrial membrane.
Three models describe the assembly of porins by the SAM complex and their insertion into the outer membrane. Model 1 suggests that porins are assembled outside the SAM channel as the...
5.1K
The Inner Mitochondrial Membrane01:28

The Inner Mitochondrial Membrane

4.9K
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...
4.9K
Translocation of Proteins into the Mitochondria01:19

Translocation of Proteins into the Mitochondria

13.6K
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,...
13.6K
Energy to Drive Translocation01:37

Energy to Drive Translocation

2.9K
Mitochondrial protein import is powered by two distinct energy sources: ATP hydrolysis and electrochemical potential across the inner membrane. Newly synthesized precursors are bound by cytosolic chaperones of the Hsp70 family, which guide them to the import receptors on the mitochondrial surface. Utilizing the energy of ATP hydrolysis, Hsp70 chaperones transfer these precursors to the TOM receptors on the mitochondrial outer membrane.
Generally, polypeptides are unfolded by two distinct...
2.9K

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Stressed lysosome: A theoretical model of lysosomal pH regulation applied to stress conditions.

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Pitfalls of Using ANS Dye Under Molecular Crowding Conditions.

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Corrigendum to "Order wrapped in chaos: On the roles of intrinsically disordered proteins and RNAs in the arrangement of the mitochondrial enzymatic machines" [International Journal of Biomacromolecules, 267(2024), 131,455].

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相关实验视频

Updated: Mar 15, 2026

Determination of Mitochondrial Morphology in Live Cells Using Confocal Microscopy
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Determination of Mitochondrial Morphology in Live Cells Using Confocal Microscopy

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从显微镜到纳米镜:线粒体结构生物学中的当代物理方法.

Semen V Nesterov1, Anton G Rogov1, Raif G Vasilov1

  • 1National Research Center "Kurchatov Institute", Akademika Kurchatova pl. 1, 123182 Moscow, Russia.

International journal of molecular sciences
|March 14, 2026
PubMed
概括

先进的物理方法揭示了线粒体的结构和功能. 这篇评论详细介绍了显微镜,光谱和计算工具,以了解细胞能量生产和疾病.

科学领域:

  • 细胞生物学 细胞生物学
  • 生物物理学的生物物理.
  • 生物化学 生化学

背景情况:

  • 线粒体对于细胞能量,信号传递和新陈代谢至关重要.
  • 经典方法限制了对线粒体质子转移,氧化酸化对膜曲率影响以及酶超复杂组织的理解.

研究的目的:

  • 系统地审查当代的物理方法来研究线粒体结构和功能在微和纳米尺度.
  • 要突出这些方法如何克服传统生化方法的局限性.

主要方法:

  • 先进的光和超分辨率显微镜.
  • 电子和体积电子显微镜 电子显微镜
  • 扫描探头技术 扫描探头技术
  • 低温电子断层扫描 (Cryo-electron tomography) 是一种电子断层扫描技术.
  • 光探头,扩展和相位显微镜.
  • 基于机器学习的图像分析.
  • 拉曼光谱,核磁共振,X射线和中子散射.

主要成果:

  • 这些物理方法使得高分辨率成像和对线粒体形态,膜潜力和生物系统动态的定量评估成为可能.
  • 光谱和散射技术探测线粒体的氧化还原状态,代谢物组成和膜组织.
关键词:
生物能源生物能源学冷电子断层扫描 (Cryo-electron tomography) 是一种使用冷电子断层扫描的技术.光标记器 光标记器线粒体中的线粒体.线粒体形态的形态学这是光谱学.超级分辨率的超级分辨率

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  • 实验数据与计算框架的整合有助于模型测试和技术开发.
  • 结论:

    • 当代物理方法为线粒体机制提供了前所未有的洞察力.
    • 将高分辨率数据与计算分析相结合,是推动线粒体研究和开发新生物医学技术的关键.