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RNA Polymerase II Accessory Proteins02:36

RNA Polymerase II Accessory Proteins

9.2K
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...
9.2K
Constitutive and Regulated Gene Expression01:27

Constitutive and Regulated Gene Expression

35
Gene expression in prokaryotes is governed by constitutive and regulated systems, allowing cells to balance the production of essential proteins with adaptive responses to environmental changes.Constitutive Gene ExpressionConstitutive, or housekeeping, genes are continuously expressed as they encode proteins vital for fundamental cellular processes. These include enzymes for glycolysis, ribosomal components for protein synthesis, and proteins involved in DNA replication. Their constant...
35
Regulation of Expression Occurs at Multiple Steps02:24

Regulation of Expression Occurs at Multiple Steps

22.8K
Gene expression can be regulated at almost every step from gene to protein. Transcription is the step that is most commonly regulated. This involves the binding of proteins to short regulatory sequences on the DNA. This association can either promote or inhibit the transcription of a gene associated with the respective sequence.
Transcription results in the generation of precursor (pre-mRNA) that consists of both exons and introns, which needs further processing before being translated to a...
22.8K
Duplication of Chromatin Structure02:05

Duplication of Chromatin Structure

5.6K
The process of chromosome duplication during cell division requires genome-wide disruption and re-assembly of chromatin. The chromatin structure must be accurately inherited, reassembled, and maintained in the daughter cells to ensure lineage propagation.
The basic unit of the chromatin is the nucleosome, consisting of DNA wrapped around octameric histone proteins and short stretches of linker DNA separating individual nucleosomes. The histone proteins within the nucleosome have their...
5.6K
Repressible Operon: trp Operon01:21

Repressible Operon: trp Operon

42
The trp operon in Escherichia coli exemplifies a repressible operon. It regulates the synthesis of tryptophan through repressor-mediated transcriptional control and attenuation. This dual regulatory mechanism ensures tryptophan biosynthesis occurs only when needed, conserving cellular resources.Structure of the trp OperonThe trp operon consists of five structural genes (trpE, trpD, trpC, trpB, and trpA) that encode enzymes for tryptophan biosynthesis. These genes are transcribed as a single...
42
Prokaryotic Transcriptional Activators and Repressors01:58

Prokaryotic Transcriptional Activators and Repressors

21.1K
The organization of prokaryotic genes in their genome is notably different from that of eukaryotes. Prokaryotic genes are organized, such that the genes for proteins involved in the same biochemical process or function are located together in groups. This group of genes, along with their regulatory elements, are collectively known as an operon. The functional genes in an operon are transcribed together to give a single strand of mRNA known as polycistronic mRNA.
Transcription of prokaryotic...
21.1K

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相关实验视频

Updated: Jul 16, 2025

Repressing Gene Transcription by Redirecting Cellular Machinery with Chemical Epigenetic Modifiers
10:28

Repressing Gene Transcription by Redirecting Cellular Machinery with Chemical Epigenetic Modifiers

Published on: September 20, 2018

6.5K

重复性DNA可以调节基因表达

Thomas E Kuhlman1

  • 1Department of Physics and Astronomy, University of California, Riverside, Riverside, CA, USA.

Science (New York, N.Y.)
|September 21, 2023
PubMed
概括

短串重复 (STR) 通过与调节蛋白相互作用来影响基因活性. 这些DNA序列在基因调节中起着至关重要的作用.

科学领域:

  • 遗传学
  • 分子生物学
  • 表观遗传学

背景情况:

  • 短串重复 (STR) 是重复的DNA序列.
  • STRs在基因调节中的功能作用尚未完全理解.
  • 调节性蛋白质是控制基因表达的关键组成部分.

研究的目的:

  • 研究短串重复对基因表达的影响.
  • 阐明STRs影响基因活性的机制.
  • 确定调节蛋白结合在STR介导的基因调节中的作用.

主要方法:

  • 包含短串重复的DNA序列的分析.
  • 基因表达的测试
  • 蛋白质与DNA结合的实验

主要成果:

  • 短时间的双重重复被发现直接影响基因表达水平.
  • 观察到特定的调节蛋白与STR结合.
  • 这种结合与改变的基因表达模式相关.

结论:

  • 短串重复是调节基因表达的功能元素.

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  • 调节性蛋白与STR的相互作用是这种调节的一个关键机制.
  • STR代表了表观遗传和基因调节的一个重要因素.