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The gene encoding the main signaling molecules of the Wnt signaling pathways (the Wnt proteins) was discovered almost four decades ago by Nüsslein-Volhard and Wieschaus. They identified and originally named the gene "wingless" (wg) after a phenotype discovered during their landmark genetic screen in Drosophila for body pattern defects. At around the same time, another researcher named Harold Varmus found that a murine tumor virus activates the mammalian wg homolog, Int-1, which...
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Mitogen-activated protein kinase, or MAPK pathway, activates three sequential kinases to regulate cellular responses such as proliferation, differentiation, survival, and apoptosis. The canonical MAPK pathway starts with a mitogen or growth factor binding to an RTK. The activated RTKs stimulate Ras, which recruits Raf or MAP3 Kinase (MAPKKK), the first kinase of the MAPK signaling cascade. Raf further phosphorylates and activates MEK or MAP2 Kinases (MAPKK), which in turn phosphorylates MAP...
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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...
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Signaling cascades usually lack linearity. Multiple pathways interact and regulate one another, allowing cells to integrate and respond to diverse environmental stimuli.
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mTOR信号:最近取得的进展

Antonios N Gargalionis1, Kostas A Papavassiliou2, Athanasios G Papavassiliou3

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概括

拉巴胺素的机械性标 (mTOR) 是人类生物学中的关键调节剂,影响着许多细胞过程. 了解 mTOR 的理解

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科学领域:

  • 细胞生物学 细胞生物学
  • 分子生物学分子生物学
  • 生物化学 生物化学

背景情况:

  • 拉巴胺素的机械标 (mTOR) 是一种高度保守的氨酸/氨酸激酶,在细胞生长,增殖和新陈代谢中起着关键作用.
  • mTOR集成了营养,生长因子和能量状态的信号,以控制蛋白质合成,自和基因表达.
  • mTOR信号的失调与各种疾病有关,包括癌症,代谢障碍和神经疾病.

研究的目的:

  • 阐明mTOR在维持细胞平衡中的多方面的作用.
  • 探索针对mTOR途径进行疾病干预的治疗潜力.

主要方法:

  • 使用了基因操纵,生物化学分析和基于细胞的模型的组合.
  • 研究了下游信号事件和细胞对mTOR调制的反应.

主要成果:

  • 证明mTOR活动受到营养可用性和生长因子的严格控制.
  • 确定了mTOR的特定下游目标,这些目标介于其对蛋白质合成和自的作用.
  • 在临床前模型中展示了mTOR抑制对瘤生长的影响.

结论:

  • mTOR是一个关键节点,集成环境线索来控制细胞功能.
  • 针对mTOR提供了一个有希望的策略来治疗由异常细胞生长和新陈代谢驱动的疾病.