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相关概念视频

Cis-regulatory Sequences02:02

Cis-regulatory Sequences

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Cis-regulatory Sequences02:02

Cis-regulatory Sequences

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Cis-regulatory sequences are short fragments of non-coding DNA that are present on the same chromosomes as the genes that they regulate. These fragments serve as binding sites for transcriptional regulators, proteins that are responsible for controlling gene transcription and differential gene expression across cell types in eukaryotes. Cis-regulatory sequences can be close to the gene of interest or thousands of bases away in the DNA sequence; however, those sequences that are further away are...
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Global Regulatory Systems01:28

Global Regulatory Systems

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Global regulatory systems in bacteria enable rapid and coordinated responses to environmental changes by integrating sensory inputs with gene expression, ensuring efficient adaptation to fluctuating conditions. Key global regulatory mechanisms include regulons, two-component systems, sigma factors, and secondary messengers.Regulons and Global RegulatorsA regulon is a collection of genes and operons controlled by a common global regulator. These regulators enable bacteria to prioritize resource...
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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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Cooperative Binding of Transcription Regulators02:13

Cooperative Binding of Transcription Regulators

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Constitutive and Regulated Gene Expression01:27

Constitutive and Regulated Gene Expression

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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...
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相关实验视频

Updated: Dec 8, 2025

Genome-wide Snapshot of Chromatin Regulators and States in Xenopus Embryos by ChIP-Seq
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Genome-wide Snapshot of Chromatin Regulators and States in Xenopus Embryos by ChIP-Seq

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快照:监管基因组

X Y Bing1, P J Batut1, M Levo1

  • 1Lewis-Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ, USA.

Cell
|September 18, 2020
PubMed
概括

增强剂对于基因调节至关重要,控制基因活动基于细胞信号. 增强剂DNA的变化影响了种群多样性和疾病易感性.

科学领域:

  • 遗传学和基因组学
  • 分子生物学
  • 表观遗传学

背景情况:

  • 增强剂是控制基因表达的关键调节元素.
  • 它们对各种内部和外部细胞信号作出反应.
  • 增强剂是调控基因组的基本组成部分.

研究的目的:

  • 突出增强剂在基因调节中的关键作用.
  • 强调增强剂DNA序列变化的重要性.
  • 强调增强剂,人口多样性和疾病之间的联系.

主要方法:

  • 对基因调节中的增强器功能的分析.
  • 在增强器DNA中对序列多态性的研究.
  • 对增强元件的现有文献进行审查.

主要成果:

  • 增强剂作为激活和关闭基因的关键开关.
  • 增强器DNA中的序列变异对人类的多样性有着显著的贡献.
  • 这些变化与多种疾病的倾向增加有关.

结论:

  • 增强剂对于理解基因调节至关重要.

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  • 增强型DNA多态是疾病的重要遗传因素.
  • 对增强剂的进一步研究可以揭示疾病和多样性的机制.