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线粒体中的蛋白质折叠需要通过hsp60和ATP水解形成复杂的结构
J Ostermann1, A L Horwich, W Neupert
1Institut für Physiologische Chemie der Universität München, FRG.
Nature
|September 14, 1989
概括
线粒体热冲击蛋白60 (hsp60) 有助于线粒体内的折叠蛋白. 这个过程涉及hsp60表面的ATP介导反应,导致多释放,表明hsp60催化蛋白质折叠.
科学领域:
- 线粒体生物学 线粒体生物学
- 分子的伴侣是分子的伴侣.
- 蛋白质折叠过程中的蛋白质折叠
背景情况:
- 线粒体热冲击蛋白60 (hsp60) 对于线粒体中的蛋白质进口和折叠至关重要.
- 通过hsp60促进蛋白质折叠的精确机制仍在研究中.
研究的目的:
- 阐明hsp60在线粒体蛋白折叠中的功能作用.
- 研究通过hsp60.0.通过ATP介导蛋白质折叠的机制.
主要方法:
- 研究蛋白质进口和线粒体内的折叠.
- 分析涉及hsp60.0.的ATP介导反应.
- 从hsp60.60中结合和释放聚的特征.
主要成果:
- 线粒体hsp60促进了进口蛋白质的折叠.
- 蛋白质折叠发生在hsp60表面,通过一种依赖ATP的机制.
- 结合的多在折叠后被释放出来.
结论:
- 线粒体hsp60作为蛋白质折叠的催化剂.
- 与hsp60的ATP介导相互作用对其蛋白质折叠功能至关重要.
相关概念视频
Protein Folding
Overview
Protein Folding
Overview
Molecular Chaperones and Protein Folding
The native conformation of a protein is formed by interactions between the side chains of its constituent amino acids. When the amino acids cannot form these interactions, the protein cannot fold by itself and needs chaperones. Notably, chaperones do not relay any additional information required for the folding of polypeptides; the native conformation of a protein is determined solely by its amino acid sequence. Chaperones catalyze protein folding without being a part of the folded protein.
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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...
Generally, polypeptides are unfolded by two distinct...
Protein Folding
Proteins are chains of amino acids linked together by peptide bonds. Upon synthesis, a protein folds into a three-dimensional conformation, critical to its biological function. Interactions between its constituent amino acids guide protein folding, and hence the protein structure is primarily dependent on its amino acid sequence.
Protein Structure Is Critical to Its Biological Function
Proteins perform a wide range of biological functions such as catalyzing chemical reactions, providing...
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Proteins perform a wide range of biological functions such as catalyzing chemical reactions, providing...
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The native conformation of a protein is formed by interactions between the side chains of its constituent amino acids. When the amino acids cannot form these interactions, the protein cannot fold by itself and needs chaperones. Notably, chaperones do not relay any additional information required for the folding of polypeptides; the native conformation of a protein is determined solely by its amino acid sequence. Chaperones catalyze protein folding without being a part of the folded protein.
The...
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