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相关概念视频

Protein Folding01:22

Protein Folding

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Induced-fit Model01:13

Induced-fit Model

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Most chemical reactions in cells require enzymes—biological catalysts that speed up the reaction without being consumed or permanently changed. They reduce the activation energy needed to convert the reactants into products. Enzymes are proteins, that usually work by binding to a substrate—a reactant molecule that they act upon.
Enzymes exhibit substrate specificity, meaning that they can only bind to certain substrates. This is mainly determined by the shape and chemical...
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Protein and Protein Structure02:15

Protein and Protein Structure

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Proteins are one of the most abundant organic molecules in living systems and have the most diverse range of functions of all macromolecules. Proteins may be structural, regulatory, contractile, or protective. They may serve in transport, storage, or membranes; or they may be toxins or enzymes. Their structures, like their functions, vary greatly. They are all, however, amino acid polymers arranged in a linear sequence.
A protein's shape is critical to its function. For example, an enzyme...
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Caspases01:24

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Caspase, a family of cysteine proteases, serve as effectors in apoptosis. The ced3 gene in C.elegans was first identified to be involved in apoptosis. This gene encodes the ced-3 caspase that is similar to the interleukin-1-beta converting enzyme or ICE in mammals. In addition to apoptosis, caspases also function in the inflammatory response. Inflammatory caspases are essential in activating pro-inflammatory cytokines that recruit immune cells and block the replication of pathogens inside...
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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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Catenins01:23

Catenins

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Catenins are characterized by multiple binding domains and dynamic structures that allow them to function as linker proteins in cell junction complexes. All catenins, except α-catenin, contain a characteristic protein sequence called the armadillo repeat and are therefore also called armadillo proteins.
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相关实验视频

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Self-assembly of Complex Two-dimensional Shapes from Single-stranded DNA Tiles
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一种激酶使得卡斯帕斯形成形状.

Denise J Montell1

  • 1Department of Biological Chemistry, Johns Hopkins University, Baltimore, MD 21205, USA. dmontell@jhmi.edu

Cell
|August 12, 2006
PubMed
概括

一种新型的多索菲拉酶,DmIKK epsilon,调节DIAP1蛋白水平. 这种调节出乎意料地影响了actin动力学和细胞分化,而不是细胞亡.

科学领域:

  • 细胞生物学 细胞生物学
  • 分子生物学分子生物学
  • 发展生物学 发展生物学

背景情况:

  • 蛋白质DIAP1以其在抑制亡中的作用而闻名.
  • 已经确定了一种以前未被描述的Drosophila激酶,DmIKK epsilon.

研究的目的:

  • 为了研究新型多虫酶DmIKKepsilon的功能.
  • 了解DmIKKepsilon对DIAP1蛋白丰度及其下游影响的调节作用.

主要方法:

  • 一种新的Drosophila激酶 (DmIKK epsilon) 的表征.
  • 对DmIKKepsilon调节DIAP1蛋白水平的分析.
  • 研究DmIKK以epsilon为媒介的DIAP1降解的功能后果.

主要成果:

  • DmIKK epsilon 调节了 DIAP1.1 的丰度.
  • 通过DmIKKepsilon介导的DIAP1降解不会影响亡.
  • DmIKK epsilon 影响了行为动力学,细胞形态学和感官器官前体细胞分化.

结论:

  • DmIKK epsilon在Drosophila的发育中起着至关重要的非亡作用.

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  • 激酶DmIKK epsilon通过DIAP1调节来调节基本的细胞过程.