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相关概念视频

RNA Polymerase II Accessory Proteins02:36

RNA Polymerase II Accessory Proteins

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Proteins that regulate transcription can do so either via direct contact with RNA Polymerase or through indirect interactions facilitated by adaptors, mediators, histone-modifying proteins, and nucleosome remodelers. Direct interactions to activate transcription is seen in bacteria as well as in some eukaryotic genes. In these cases, upstream activation sequences are adjacent to the promoters, and the activator proteins interact directly with the transcriptional machinery. For example, in...
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Transcription Elongation Factors02:35

Transcription Elongation Factors

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Transcription elongation is a dynamic process that alters depending upon the sequence heterogeneity of the DNA being transcribed. Hence, it is not surprising that the elongation complex's composition also varies along the way while transcribing a gene.
The transcription elongation is regulated via pausing of RNA polymerase on several occasions during transcription. In bacteria, these halts are necessary because the transcription of DNA into mRNA is coupled to the translation of that mRNA...
10.9K
Eukaryotic Transcription Activators02:42

Eukaryotic Transcription Activators

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Transcription activators are proteins that promote the transcription of genes from DNA to RNA. In most cases, these proteins contain two separate domains ‒ a domain that binds to DNA and a domain for activating transcription; however, in some cases, a single domain is responsible for both binding and activation of transcription, as seen in the glucocorticoid receptor and MyoD.
The binding domains are capable of recognizing and interacting with regulatory sequences on the DNA. These...
11.1K
Bacterial Transcription01:53

Bacterial Transcription

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RNA polymerase (RNAP) carries out DNA-dependent RNA synthesis in both bacteria and eukaryotes. Bacteria do not have a membrane-bound nucleus. So, transcription and translation occur simultaneously, on the same DNA template.
Transcription can be divided into three main stages, each involving distinct DNA sequences to guide the polymerase. These are:
28.4K
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...
7.4K
Combinatorial Gene Control02:33

Combinatorial Gene Control

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Combinatorial gene control is the synergistic action of several transcriptional factors to regulate the expression of a single gene. The absence of one or more of these factors may lead to a significant difference in the level of gene expression or repression.
The expression of more than 30,000 genes is controlled by approximately 2000-3000 transcription factors. This is possible because a single transcription factor can recognize more than one regulatory sequence. The specificity in gene...
8.4K

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相关实验视频

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Rapid Synthesis and Screening of Chemically Activated Transcription Factors with GFP-based Reporters
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Rapid Synthesis and Screening of Chemically Activated Transcription Factors with GFP-based Reporters

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另一种策略是诱导动态调制的短暂转录机械.

Zhenzhen Li1, Jianbang Wang1, Itamar Willner1

  • 1The Institute of Chemistry, The Center for Nanoscience and Nanotechnology, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

ACS nano
|September 5, 2023
PubMed
概括

合成生物学可以使用DNA电路对基因表达进行精确的控制. 这项研究引入了三种新的短暂转录方法,为先进的合成系统提供对RNA和DNA酶生产的动态控制.

科学领域:

  • 系统化学 系统化学
  • 合成生物学 合成生物学
  • 分子工程是分子工程.

背景情况:

  • 通过合成电路控制时间基因表达是一个重大挑战.
  • 原生转录机械表现出难以合成模拟的短暂行为.
  • 开发动态和封闭转录的方法对于复杂的生物系统至关重要.

研究的目的:

  • 引入三个不同的方法来操作短暂转录机械.
  • 调节关闭的转录过程,用于目标RNA的生产.
  • 为了证明RNA体的并行和封闭的转录和DNA酶的动态表达.

主要方法:

  • 使用促进体燃料链触发转录并产生DNA酶的反应模块的设计.
  • 双模板反应模块的应用用于促进物位移和转录调制.
  • 利用尼克酶刺激的促进子链的耗尽来控制短暂的转录.
  • 集成并行转录模板和阻断单元用于多重RNA合成.

主要成果:

  • 成功演示了三种不同的过渡转录控制策略.
  • 实现了两种不同的RNA体的并行和封闭转录.
  • 展示了使用尼克酶刺激模块关闭,暂时运行的DNA酶的动态表达.
关键词:
这就是DNAzyme DNA酶.它们是RNA受体.消散电路的消散电路是一个消散电路.封闭的转录 封闭的转录尼卡斯尼卡斯是什么意思子的移位 子的移位

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Last Updated: Jul 17, 2025

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  • 验证了调节电路运行主动模板散射耗尽的能力.
  • 结论:

    • 开发的方法提供了对合成电路中短暂基因表达的强有力的控制.
    • 这些方法使RNA和DNA酶合成的精确时间调制成为可能.
    • 这些发现推动了系统化学和合成生物学领域的发展,为设计复杂的分子系统提供了新的工具.