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相关概念视频

Molecular Chaperones and Protein Folding03:00

Molecular Chaperones and Protein Folding

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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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Molecular Chaperones and Protein Folding03:00

Molecular Chaperones and Protein Folding

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No description available
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Protein Folding01:25

Protein Folding

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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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Protein Folding01:22

Protein Folding

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Overview
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Protein Folding01:22

Protein Folding

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No description available
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Protein Complex Assembly02:41

Protein Complex Assembly

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Proteins can form homomeric complexes with another unit of the same protein or heteromeric complexes with different types.  Most protein complexes self-assemble spontaneously via ordered pathways, while some proteins need assembly factors that guide their proper assembly. Despite the crowded intracellular environment, proteins usually interact with their correct partners and form functional complexes.
Many viruses self-assemble into a fully functional unit using the infected host cell to...
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相关实验视频

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Malachite Green Assay for the Discovery of Heat-Shock Protein 90 Inhibitors
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hsp90:扭曲和折叠,可以使用.

Klaus Richter1, Johannes Buchner

  • 1Department of Chemistry, Technische Universität München, Germany.

Cell
|October 24, 2006
PubMed
概括

像热冲击蛋白90 (Hsp90) 这样的分子伴侣有助于蛋白质折叠. 新的晶体结构揭示了Hsp90反应周期,揭示了其对客户端蛋白质成熟的机制.

科学领域:

  • 生物化学 生物化学
  • 分子生物学分子生物学
  • 结构生物学 结构生物学

背景情况:

  • 分子陪伴者是重要的细胞机械,负责蛋白质折叠,防止聚合,并促进适当的蛋白质功能.
  • 热冲击蛋白质,特别是Hsp90,在细胞应激反应和通过稳定客户端蛋白质来调节各种信号通路方面发挥着关键作用.

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