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相关概念视频

Molecular Models02:00

Molecular Models

Physical models representing molecular architectures of chemical compounds play essential roles in understanding chemistry. The use of molecular models makes it easier to visualize the structures and shapes of atoms and molecules.
Protein Complexes with Interchangeable Parts01:57

Protein Complexes with Interchangeable Parts

Groups of proteins may form a complex where each protein in this complex has a different role in the overall execution of the complex’s function. Often some of the proteins in the complex can be replaced by a closely related variant to give a complex that contains many of the same components yet is functionally distinct.
The SCF ubiquitin ligase is a protein complex of five individual proteins. This complex attaches ubiquitin to other target proteins to mark them for degradation. In order to...
Protein Complexes with Interchangeable Parts01:57

Protein Complexes with Interchangeable Parts

Groups of proteins may form a complex where each protein in this complex has a different role in the overall execution of the complex’s function. Often some of the proteins in the complex can be replaced by a closely related variant to give a complex that contains many of the same components yet is functionally distinct.
The SCF ubiquitin ligase is a protein complex of five individual proteins. This complex attaches ubiquitin to other target proteins to mark them for degradation. In order to...
Assembly of Complex Microtubule Structures01:32

Assembly of Complex Microtubule Structures

Complex microtubule structures are present in resting cells and in dividing cells. In resting cells, they are responsible for maintaining the cellular architecture, tracks for intracellular transport, positioning of organelles, assembly of cilia and flagella. They mediate the bipolar spindle assembly for chromosomal segregation and positioning of the cell division plate in dividing cells. The formation of microtubule complex structures depends on the cell type, cell stage, and cell function.
Cooperative Allosteric Transitions01:58

Cooperative Allosteric Transitions

Cooperative allosteric transitions can occur in multimeric proteins, where each subunit of the protein has its own ligand-binding site. When a ligand binds to any of these subunits, it triggers a conformational change that affects the binding sites in the other subunits; this can change the affinity of the other sites for their respective ligands. The ability of the protein to change the shape of its binding site is attributed to the presence of a mix of flexible and stable segments in the...
Cooperative Allosteric Transitions01:58

Cooperative Allosteric Transitions

Cooperative allosteric transitions can occur in multimeric proteins, where each subunit of the protein has its own ligand-binding site. When a ligand binds to any of these subunits, it triggers a conformational change that affects the binding sites in the other subunits; this can change the affinity of the other sites for their respective ligands. The ability of the protein to change the shape of its binding site is attributed to the presence of a mix of flexible and stable segments in the...

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相关实验视频

Updated: May 24, 2026

Visualizing Single Molecular Complexes In Vivo Using Advanced Fluorescence Microscopy
11:26

Visualizing Single Molecular Complexes In Vivo Using Advanced Fluorescence Microscopy

Published on: September 8, 2009

想象一个依赖B12的甲基转移酶复合体内的分子杂.

Yan Kung1, Nozomi Ando, Tzanko I Doukov

  • 1Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

Nature
|March 16, 2012
PubMed
概括

这项研究揭示了对维生素B12依赖的甲基转移至关重要的大型酶复合物的完整结构. 它可视化了辅因子.

科学领域:

  • 生物化学 生物化学
  • 结构生物学 结构生物学
  • 酶学 是一种酶学.

背景情况:

  • 维生素B12衍生物对于重要的生物过程中甲基转移至关重要.
  • 现有的结构数据仅涵盖了涉及的大酶复合物的碎片.

研究的目的:

  • 为了呈现B12依赖甲基转移酶复合物的完整三维结构.
  • 在催化过程中可视化辅因子的运动和蛋白质的结构变化.

主要方法:

  • 来自Moorella thermoacetica的完整220kDa酶复合物的X射线晶体学.
  • 在晶体中进行光谱分析以确认酶活性.

主要成果:

  • 铁硫蛋白和甲基转移酶复合体的第一个完整的3D结构.
  • 维生素B12在多个位置的可视化,揭示蛋白质重组和辅因子轨迹.
  • 在晶体内显示出显著的蛋白质构造变化,证实了活性.

结论:

  • 为B12依赖甲基转移的分子机制提供了一个结构模型.
  • 解释了这种必不可少的生物反应需要复杂的蛋白质机械.

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  • 突出了在晶体状态下最大的已知的蛋白质构造运动.