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相关概念视频

MAPK Signaling Cascades01:07

MAPK Signaling Cascades

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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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Enzyme-linked receptors are proteins that act as both receptor and enzyme, activating multiple intracellular signals. This is a large group of receptors that include the receptor tyrosine kinase (RTK) family. Many growth factors and hormones bind to and activate the RTKs.
Neurotrophin (NT) receptors are a family of RTKs, including trkA, trkB, and trkC (tropomyosin-related kinase) receptors. TrkA is specific for nerve growth factor (NGF), neurotrophin-6, and neurotrophin-7. TrkB binds...
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Receptor Tyrosine Kinases01:26

Receptor Tyrosine 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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PI3K/mTOR/AKT Signaling Pathway01:22

PI3K/mTOR/AKT Signaling Pathway

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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...
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Amplifying Signals via Enzymatic Cascade01:22

Amplifying Signals via Enzymatic Cascade

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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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The JAK-STAT Signaling Pathway01:20

The JAK-STAT Signaling Pathway

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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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相关实验视频

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Identification of Kinase-substrate Pairs Using High Throughput Screening
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SnRK2s:是基因酶还是基质?

Yunmin Wei1, Linzhu Peng2, Xiangui Zhou2

  • 1Key Laboratory of Plant Genetics and Molecular Breeding, Zhoukou Normal University, Zhoukou 466001, China.

Plants (Basel, Switzerland)
|April 26, 2025
PubMed
概括

植物利用糖糖非发酵-1-相关蛋白激酶2 (SnRK2) 来适应压力. 本综述系统地分类了SnRK2基质,并探讨了其翻译后的修改,揭示了设计抗压作物的新策略.

科学领域:

  • 植物分子生物学 植物分子生物学
  • 植物生理学 植物生理学
  • 生物化学 生化学

背景情况:

  • 植物激活了涉及蛋白质激酶的复杂压力信号网络,以幸存环境逆境.
  • 糖糖非发酵-1-相关蛋白激酶2 (SnRK2) 是植物应激反应的关键调节者,化下游标,以控制基因表达和生理变化.
  • 现有的研究已经确定了许多SnRK2基质,但缺乏系统的分类和功能分析.

研究的目的:

  • 在Arabidopsis thaliana*中系统地审查和分类SnRK2-化基质.
  • 阐明这些基质在植物应激信号和发育中的功能作用.
  • 探索各种后翻译修改 (PTM) 对SnRK2调控的影响.

主要方法:

  • 文献综述和对SnRK2基质和PTM的最新研究的综合.
  • 对Arabidopsis thaliana*中特征化的SNRK2-酸化标的分析.
  • 基板数据与监管修改机制的整合.

主要成果:

  • 介绍了SnRK2基质的系统分类及其在应力信号和发育中的机械作用.
  • SnRK2经历多种PTM,包括酸化,无化,SUMOylation,S-nitrosylation,硫化和N-糖化.
关键词:
这就是SNRK2的意思.酸化的方法是:光化.后翻译修改后的修改基质 基质是一种基质.

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  • 这些PTM微调SnRK2的稳定性,活性和局部化,创建一个反系统用于酶调节.
  • 结论:

    • 在植物应激反应中,SnRK2既起酸化效应的作用,又起PTM调节的支架作用.
    • 了解SnRK2基质网络和监管PTM为提高作物弹性提供了新的途径.
    • 针对SnRK2信号模块的有针对性的操纵有可能发展出适应气候变化的农业.