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相关概念视频

Negative Regulator Molecules01:23

Negative Regulator Molecules

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Positive regulators allow a cell to advance through cell cycle checkpoints. Negative regulators have an equally important role as they terminate a cell’s progression through the cell cycle—or pause it—until the cell meets specific criteria.
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Positive Regulator Molecules01:45

Positive Regulator Molecules

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To consistently produce healthy cells, the cell cycle—the process that generates daughter cells—must be precisely regulated.
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Co-activators and Co-repressors02:04

Co-activators and Co-repressors

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Gene transcription is regulated by the synergistic action of several proteins that form a complex at a gene regulatory site. This is observed in eukaryotes, where the regulation of gene expression is a complex process. Regulatory proteins in eukaryotes can broadly be classified into two types – regulators that bind directly to specific DNA sequences and co-regulators that associate with regulatory proteins but cannot directly bind to the DNA. These co-regulators are further divided into...
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Master Transcription Regulators02:23

Master Transcription Regulators

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Master transcription regulators are regulatory proteins that are predominantly responsible for regulating the expression of multiple genes. Often these genes work in concert to drive a  complex process. Activation of a master transcription regulator can lead to a cascade of transcriptional activation necessary for that outcome. These regulators can directly bind to the regulatory sequences of the various genes involved, or they can indirectly regulate transcription by binding to regulatory...
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Cooperative Binding of Transcription Regulators02:13

Cooperative Binding of Transcription Regulators

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Transcriptional regulators bind to specific cis-regulatory sequences in the DNA to regulate gene transcription. These cis-regulatory sequences are very short, usually less than ten nucleotide pairs in length. The short length means that there is a high probability of the exact same sequence randomly occurring throughout the genome.  Since regulators can also bind to groups of similar sequences, this further increases the chances of random binding. Transcriptional regulators form...
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Inhibition of Cdk Activity02:34

Inhibition of Cdk Activity

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The orderly progression of the cell cycle depends on the activation of Cdk protein by binding to its cyclin partner. However, the cell cycle must be restricted when undergoing abnormal changes. Most cancers correlate to the deregulated cell cycle, and since Cdks are a central component of the cell cycle, Cdk inhibitors are extensively studied to develop anticancer agents. For instance, cyclin D associates with several Cdks, such as Cdk 4/6, to form an active complex. The cyclin D-Cdk4/6 complex...
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相关实验视频

Updated: Jul 28, 2025

Examination of Thymic Positive and Negative Selection by Flow Cytometry
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Examination of Thymic Positive and Negative Selection by Flow Cytometry

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CD1显示了自己的负监管器.

Adam Shahine1, Ildiko Van Rhijn2, Jamie Rossjohn3

  • 1Infection and Immunity Program and Department of Biochemistry and Molecular Biology, Biomedicine Discovery Institute, Monash University, Clayton, Victoria 3800, Australia.

Current opinion in immunology
|May 28, 2023
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概括

新的研究显示,自反应性T细胞受体 (TCR) 可以直接识别CD1蛋白,独立于脂质. 现在,天然配体显示出负调节,阻断TCR结合,并为CD1介导的皮肤疾病治疗提供了策略.

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Phenotypic and Functional Analysis of Activated Regulatory T Cells Isolated from Chronic Lymphocytic Choriomeningitis Virus-infected Mice
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相关实验视频

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科学领域:

  • 免疫学 免疫学 免疫学
  • 细胞生物学 细胞生物学
  • 生物化学 生物化学

背景情况:

  • CD1受限制的T细胞在免疫反应中起着至关重要的作用.
  • 由CD1蛋白呈现的脂质抗原是这些T细胞的关键激活剂.
  • 与CD1相互作用的T细胞受体 (TCR) 的精确机制仍在发展.

研究的目的:

  • 审查最近关于识别CD1蛋白的自反应T细胞受体 (TCR) 的发现.
  • 探索脂质不可知和负调节的TCR-CD1相互作用的概念.
  • 概述发现CD1-反应性T细胞的抑制剂的策略.

主要方法:

  • 关于CD1-受限T细胞的最近研究的文献综述.
  • 对TCR与CD1蛋白结合的潜在机制的分析.
  • 讨论自然的CD1连接体及其抑制功能.

主要成果:

  • 自主反应性αβT细胞受体 (TCR) 可以直接识别CD1蛋白质,独立于脂质抗原.
  • 已经发现天然的CD1配体可以负面调节TCR与CD1a和CD1d的结合.
  • 这些发现突显了细胞系统中正负调节之间的差异.

结论:

  • 对CD1-TCR相互作用的理解正在从依赖脂质的激活转向直接的蛋白质识别和负调节.
  • 发现脂抑制剂针对CD1-反应性T细胞的发现为CD1-介导性皮肤疾病提供了治疗潜力.
  • 对这些调节机制的进一步研究对于推进免疫学和治疗相关疾病至关重要.