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相关概念视频

Protein Kinases and Phosphatases02:54

Protein Kinases and Phosphatases

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Proteins undergo chemical modifications that trigger changes in the charge, structure, and conformation of the proteins. Phosphorylation, acetylation, glycosylation, nitrosylation, ubiquitination, lipidation, methylation, and proteolysis are various protein modifications that regulate protein activity. Such modifications are usually enzyme-driven.
Protein kinases
Many proteins in the cell are regulated by phosphorylation, the addition of a phosphate group. A family of enzymes called kinases...
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Receptor tyrosine kinases or RTKs are membrane-bound receptors that phosphorylate specific tyrosine on protein substrates. RTKs regulate cellular growth, differentiation, survival, and migration. They contain an extracellular ligand binding domain, a transmembrane domain, and a cytosolic tail with intrinsic kinase activity. Several extracellular signaling molecules activate RTKs in one or more ways and relay the signal downstream. Ligands such as platelet-derived growth factor (PDGF) or...
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When a ligand binds to a cell-surface receptor, the receptor's intracellular domain changes shape, which may either activate its enzyme function or allow its binding to other molecules. The initial signal is amplified by most signal transduction pathways. This means that a single ligand molecule can activate multiple molecules of a downstream target. Proteins that relay a signal are most commonly phosphorylated at one or more sites, activating or inactivating the protein. Kinases catalyze...
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Enzyme-linked receptors are cell-surface receptors acting as an enzyme or associating with an enzyme intracellularly. They make excellent drug targets. Drugs can bind to the extracellular ligand-binding domain or directly affect their enzymatic domain and alter their activity.
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Covalently Linked Protein Regulators

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Proteins can undergo many types of post-translational modifications, often in response to changes in their environment. These modifications play an important role in the function and stability of these proteins. Covalently linked molecules include functional groups, such as methyl, acetyl, and phosphate groups, and also small proteins, such as ubiquitin. There are around 200 different types of covalent regulators that have been identified.
These groups modify specific amino acids in a protein....
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Inositol-requiring kinase one or IRE1 is the most conserved eukaryotic unfolded protein response (UPR) receptor. It is a type I transmembrane protein kinase receptor with a distinctive site-specific RNase activity. As the binding mechanics of the misfolded proteins with the N-terminal domain of IRE-1 are unclear, three binding models — direct, indirect, and allosteric -- are proposed for receptor activation. Nevertheless, it is known that once a misfolded protein associates with IRE1, it...
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相关实验视频

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Assaying Protein Kinase Activity with Radiolabeled ATP
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揭示eEF-2激酶:最近对功能结构的洞察

Andrea Piserchio1, Kevin N Dalby2, Ranajeet Ghose3

  • 1Department of Chemistry and Biochemistry, The City College of New York, New York, NY 10031, USA.

Trends in biochemical sciences
|December 16, 2023
PubMed
概括

细胞延长因子2激酶 (eEF-2K) 通过卡尔莫杜林 (CaM) 独特地激活. 结构洞察力揭示了eEF-2K如何集成信号以控制基于细胞需求的翻译.

关键词:
卡尔莫杜林依赖性酶酸化的方法是:光化.蛋白质蛋白质相互作用翻译延伸延伸 翻译延伸α-酶的使用情况.

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科学领域:

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

背景情况:

  • 细胞延长因子2激酶 (eEF-2K) 通过化eEF-2来调节蛋白质合成.
  • 卡尔莫杜林 (CaM) 激活eEF-2K不同于其他依赖CaM的激酶 (CAMK).

研究的目的:

  • 为eEF-2K的独特激活机制提供最近的结构洞察力.
  • 检查监管信号如何影响eEF-2K激活.
  • 为了确定未来结构功能研究的关键未回答的问题.

主要方法:

  • 对eEF-2K的结构分析.
  • 研究对eEF-2K激活的调节信号效应.

主要成果:

  • 对eEF-2K独特的CaM依赖激活的详细结构洞察.
  • 了解多种信号如何调节eEF-2K活动.

结论:

  • eEF-2K具有一个独特的激活机制,涉及CaM.
  • 需要进一步的结构研究来了解eEF-2K的各种细胞信号的集成.
  • 回答这些问题将澄清eEF-2K如何将翻译与细胞需求相协调.