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相关概念视频

Enzyme Inhibition01:30

Enzyme Inhibition

Inhibitors are molecules that reduce enzyme activity by binding to the enzyme. In a normally functioning cell, enzymes are regulated by a variety of inhibitors. Drugs and other toxins can also inhibit enzymes. Some inhibitors bind to the enzyme’s active site, while others inhibit enzymatic activity by binding to other sites on the protein structure.
Protein Kinases and Phosphatases02:54

Protein Kinases and Phosphatases

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...
Amplifying Signals via Enzymatic Cascade01:22

Amplifying Signals via Enzymatic Cascade

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 the...
The JAK-STAT Signaling Pathway01:20

The JAK-STAT Signaling Pathway

Several cytokine receptors have tightly bound Janus kinase or JAK proteins attached at their cytosolic tail. Small signaling molecules such as cytokines, growth hormones, or prolactins bind to the cytokine receptors and initiate their dimerization. The dimerization brings the cytosolic JAKs together that trans-phosphorylate and activates each other. The activated JAKs now phosphorylate cytosolic tails of the cytokine receptors, which serve as binding sites for adaptor proteins such as  SH2...
PI3K/mTOR/AKT Signaling Pathway01:22

PI3K/mTOR/AKT Signaling Pathway

The mammalian target of rapamycin  (mTOR) is a serine/threonine kinase that regulates growth, proliferation, and cell survival in response to hormones, growth factors, or nutrient availability. This kinase exists in two structurally and functionally distinct forms: mTOR complex 1  (mTORC1) and mTOR complex 2  (mTORC2). The first form (mTORC1) is composed of a rapamycin-sensitive Raptor and proline-rich Akt substrate, PRAS40. In contrast,  mTORC2 consists of a rapamycin-insensitive companion...
cAMP-dependent Protein Kinase Pathways01:25

cAMP-dependent Protein Kinase Pathways

Cyclic Adenosine Monophosphate (cAMP) is an essential second messenger that activates protein kinase A (PKA) and regulates various biological processes. A single epinephrine molecule binds to GPCR and activates several heterotrimeric G proteins, each stimulating multiple adenylyl cyclase, amplifying the signal, and synthesizing large numbers of cAMP molecules. Small changes in cAMP concentration affect PKA activity. The binding of four cAMP molecules induces a conformational change in PKA,...

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相关实验视频

Updated: Jul 6, 2026

Identification of Mediators of T-cell Receptor Signaling via the Screening of Chemical Inhibitor Libraries
08:49

Identification of Mediators of T-cell Receptor Signaling via the Screening of Chemical Inhibitor Libraries

Published on: January 22, 2019

新型PI类似物选择性地阻断了促进生存的血清/氨酸激酶Akt Akt的激活.

Alan P Kozikowski1, Haiying Sun, John Brognard

  • 1Drug Discovery Program, Department of Neurology, Georgetown University, 3900 Reservoir Road, NW, Washington, DC 20007, USA. kozikowa@georgetown.edu

Journal of the American Chemical Society
|January 30, 2003
PubMed
概括

研究人员合成了新型的酸丁醇 (PI) 类似物,以阻止肺癌细胞中Akt的激活. 这些化合物通过向关键信号蛋白来为癌症提供潜在的新治疗策略.

科学领域:

  • 生物化学 生物化学
  • 药用化学 医学化学
  • 在瘤学瘤学.

背景情况:

  • 阿克特信号的异常激活在许多癌症中很常见,包括肺癌.
  • 针对构成性活性的Akt,为癌症治疗提供了治疗机会.
  • 脂氨醇 (PI) 特定的脂酶C (PI-PLC) 可以代谢PI类似物,限制其有效性.

研究的目的:

  • 为了合成新型的3-脱氧化脂类型的酸 (PI) 类似物.
  • 为了研究肺癌细胞中Akt信号传递的选择性抑制.
  • 通过修改2-基组来增强PI类似物的代谢稳定性.

主要方法:

  • 从l-quebrachitol中合成3-脱氧化以太脂类PI类似物.
  • 对H157和H1703肺癌细胞系中化合物的疗效的评估.
  • 对Akt,PDK-1和MAPK信号通路的影响的评估.
  • 与酸盐相比碳酸盐结合剂的PI类似物进行比较.

主要成果:

  • 新型PI类似物选择性地阻断了肺癌细胞中的Akt激活.
  • 抑制阿克特发生在不影响上游激酶PDK-1或下游MAPK的情况下.
  • 修改2基组通过PI-PLC减少了代谢降解.

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Identification of Mediators of T-cell Receptor Signaling via the Screening of Chemical Inhibitor Libraries

Published on: January 22, 2019

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Multiomics Analysis of TMEM200A as a Pan-Cancer Biomarker

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Mechanism of Kemeng Fang's Inhibition of Podocyte Apoptosis in Rats with Membranous Nephropathy through the PI3K/AKT Signaling Pathway
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Mechanism of Kemeng Fang's Inhibition of Podocyte Apoptosis in Rats with Membranous Nephropathy through the PI3K/AKT Signaling Pathway

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  • 含有酸结合剂的PI类似物表现出比含有碳酸结合剂的更高的疗效.
  • 结论:

    • 3-脱氧化以太脂类PI类似物是Akt信号传递的有效抑制剂.
    • 干设计针对信号蛋白的PH域是一个可行的治疗策略.
    • 这些PI类似物代表了一类独特的潜在癌症治疗药物.