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相关概念视频

Cooperative Binding of Transcription Regulators02:13

Cooperative Binding of Transcription Regulators

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 dimers that...
Combinatorial Gene Control02:33

Combinatorial Gene Control

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...
Rab Proteins01:14

Rab Proteins

Rab proteins constitute the largest family of monomeric GTPases, of which 70 members are present in humans. Rab proteins and their effectors regulate consecutive stages of vesicle transport such as vesicle transport, docking, and fusion to the correct recipient membrane.
Rab proteins switch between a cytosolic, GDP-bound inactive state and a membrane-anchored, GTP-bound active state. By themselves, Rabs show slow rates of GDP/GTP exchange and GTP hydrolysis. Thus, Rab proteins are considered...
Exon Recombination02:32

Exon Recombination

The evolution of new genes is critical for speciation. Exon recombination, also known as exon shuffling or domain shuffling, is an important means of new gene formation. It is observed across vertebrates, invertebrates, and in some plants such as potatoes and sunflowers. During exon recombination, exons from the same or different genes recombine and produce new exon-intron combinations, which might evolve into new genes. 
Exon shuffling follows “splice frame rules.” Each exon has three reading...
General Transcription Factors01:30

General Transcription Factors

Tissue-specific transcription factors contribute to diverse cellular functions in mammals. For example, the gene for beta globin, a major component of hemoglobin, is present in all cells of the body. However, it is only expressed in red blood cells because the transcription factors that can bind to the promoter sequences of the beta globin gene are only expressed in these cells. Tissue-specific transcription factors also ensure that mutations in these factors may impair only the function of...
Cooperative Binding of Transcription Regulators02:13

Cooperative Binding of Transcription Regulators

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 dimers that...

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相关实验视频

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Recombinant Retroviral Production and Infection of B Cells
09:19

Recombinant Retroviral Production and Infection of B Cells

Published on: February 18, 2011

对于正常转录和免疫球蛋白卡帕基因子集的V(D) J重组,OcaB是必需的.

Rafael Casellas1, Mila Jankovic, Gesa Meyer

  • 1Laboratory of Molecular Immunology, New York, NY 10021, USA.

Cell
|September 17, 2002
PubMed
概括

OcaB (也称为Bob-1) 对于免疫球蛋白卡帕基因V(D) J重组至关重要. 这项研究揭示了OcaB在体内增强Igkappa基因转录,影响B细胞发育和免疫功能.

科学领域:

  • 免疫学 免疫学 免疫学
  • 分子生物学分子生物学
  • 遗传学 遗传学 是一个

背景情况:

  • OcaB (Bob-1/OBF-1) 是一种转录协活性剂,因其在免疫球蛋白 (Ig) 基因转录中的作用而被确定.
  • 缺乏OcaB的小鼠表现出免疫缺陷,包括缺少生殖中心和减少不成熟的B细胞,但Ig基因转录似乎不受影响.
  • 由OcaB所准的特定基因及其在B细胞发育中的确切功能仍然不清楚.

研究的目的:

  • 调查OcaB在免疫球蛋白基因V(D) J重组中的作用.
  • 确定OcaB影响B细胞发育和免疫反应的机制.
  • 在体内确定由OcaB调节的特定Ig基因.

主要方法:

  • 对OcaB缺乏 (OcaB-/-) 的小鼠进行分析.
  • 在Igkappa基因中评估V(D) J重组效率.
  • 在体内对Igkappa基因转录的定量分析.

主要成果:

  • OcaB对于Igkappa基因的一个子集的V(D) J重组是必不可少的.
  • 在体内,OcaB直接增强Igkappa基因转录.
  • 这些发现将OcaB的功能与B细胞受体基因组合中的关键步骤联系起来.

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Combined Immunofluorescence and DNA FISH on 3D-preserved Interphase Nuclei to Study Changes in 3D Nuclear Organization
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Combined Immunofluorescence and DNA FISH on 3D-preserved Interphase Nuclei to Study Changes in 3D Nuclear Organization

Published on: February 3, 2013

CRISPR-Mediated Reorganization of Chromatin Loop Structure
09:20

CRISPR-Mediated Reorganization of Chromatin Loop Structure

Published on: September 14, 2018

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Recombinant Retroviral Production and Infection of B Cells
09:19

Recombinant Retroviral Production and Infection of B Cells

Published on: February 18, 2011

Combined Immunofluorescence and DNA FISH on 3D-preserved Interphase Nuclei to Study Changes in 3D Nuclear Organization
13:55

Combined Immunofluorescence and DNA FISH on 3D-preserved Interphase Nuclei to Study Changes in 3D Nuclear Organization

Published on: February 3, 2013

CRISPR-Mediated Reorganization of Chromatin Loop Structure
09:20

CRISPR-Mediated Reorganization of Chromatin Loop Structure

Published on: September 14, 2018

结论:

  • 在特定Igkappa基因的V(D) J重组中,OcaB起着至关重要的作用.
  • 由OcaB增强Igkappa基因转录是其在B细胞发育中的功能基础的关键机制.
  • 这项研究澄清了OcaB缺乏小鼠的矛盾发现,并强调了OcaB在适应性免疫中的重要性.