哺乳动物呼吸复合体I的结构
Jiapeng Zhu1, Kutti R Vinothkumar2, Judy Hirst1
1MRC Mitochondrial Biology Unit, Hills Road, Cambridge CB2 0XY, UK.
Nature
|August 12, 2016
概括
研究人员绘制了哺乳动物复合物I的完整结构, 这揭示了它的许多子单元的作用,并提供了对酶功能和疾病相关突变的见解.
科学领域:
- 生物化学
- 结构生物学
- 线粒体生物学
背景情况:
- 复合物I (NADH:ubiquinone oxidoreductase) 对于哺乳动物线粒体中的ATP合成至关重要.
- 它包括14个保存的核心子单元和31个哺乳动物特有的超数子单元.
- 超值子单元的功能尚未得到充分理解.
研究的目的:
- 确定哺乳动物复合体I的完整结构.
- 为了阐明超数子单位的作用.
- 为了理解复合体I的动态转换和调节.
主要方法:
- 单粒子电子低温显微镜 (cryo-EM) 的分辨率为4.2 Å.
- 结构类的计算分类.
- 所有45个子单位的建模.
主要成果:
- 确定了Bos Taurus Complex I的完整的45个子单位结构.
- 所有31个超值子单位都被定位和建模.
- 确定了与活跃到非活跃转型相关的结构动态.
结论:
- 这项研究为了解复杂I组合和功能障碍提供了基础结构.
- 揭示了超数子单元和催化调节的作用.
- 这些发现为研究与复杂I相关的疾病提供了基础.
更多相关视频
05:45Author Spotlight: Unveiling Oxidative Phosphorylation System Dynamics and Mitochondrial Roles in Health and Disease
Published on: May 3, 2024
2.2K
09:53High-Resolution Respirometry to Assess Bioenergetics in Cells and Tissues Using Chamber- and Plate-Based Respirometers
Published on: October 26, 2021
5.7K
相关概念视频
The Supercomplexes in the Crista Membrane
3.1K
The mitochondrial cristae membrane is the primary site for the oxidative phosphorylation (OXPHOS) process of energy conversion mediated through respiratory complexes I to V. These complexes have been widely studied for decades, and it has been proven that they form supramolecular structures called respiratory supercomplexes (SC). These higher-order complexes may be crucial in maintaining the biochemical structure and improving the physiological activity of the individual complexes while...
3.1K
Electron Transport Chain: Complex I and II
19.4K
The mitochondrial electron transport chain (ETC) is the main energy generation system in the eukaryotic cells. However, mitochondria also produce cytotoxic reactive oxygen species (ROS) due to the large electron flow during oxidative phosphorylation. While Complex I is one of the primary sources of superoxide radicals, ROS production by Complex II is uncommon and may only be observed in cancer cells with mutated complexes.
ROS generation is regulated and maintained at moderate levels necessary...
ROS generation is regulated and maintained at moderate levels necessary...
19.4K
Electron Transport Chain: Complex III and IV
9.6K
During the electron transport chain, electrons from NADH and FADH2 are first transferred to complexes I and II, respectively. These two complexes then transfer the electrons to ubiquinol, which carries them further to complex III. Complex III passes the electrons across the intermembrane space to Cyt c, which carries them further to complex IV. Complex IV donates electrons to oxygen and reduces it to water. As electrons pass through complexes I, III, and IV, the energy released aids the pumping...
9.6K
Electron Transport Chains
115.2K
The final stage of cellular respiration is oxidative phosphorylation that consists of two steps: the electron transport chain and chemiosmosis. The electron transport chain is a set of proteins found in the inner mitochondrial membrane in eukaryotic cells. Its primary function is to establish a proton gradient that can be used during chemiosmosis to produce ATP and generate electron carriers, such as NAD+ and FAD, that are used in glycolysis and the citric acid cycle.
The ETC is comprised of...
The ETC is comprised of...
115.2K
The Inner Mitochondrial Membrane
5.0K
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...
5.0K
The Electron Transport Chain
21.0K
The electron transport chain or oxidative phosphorylation is an exothermic process in which free energy released during electron transfer reactions is coupled to ATP synthesis. This process is a significant source of energy in aerobic cells, and therefore inhibitors of the electron transport chain can be detrimental to the cell's metabolic processes.
Inhibitors of the electron transport chain
Rotenone, a widely used pesticide, prevents electron transfer from Fe-S cluster to ubiquinone or Q...
Inhibitors of the electron transport chain
Rotenone, a widely used pesticide, prevents electron transfer from Fe-S cluster to ubiquinone or Q...
21.0K
