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関連する概念動画

Transcription01:10

Transcription

138.2K
Overview
Transcription is the process of synthesizing RNA from a DNA sequence by RNA polymerase. It is the first step in producing a protein from a gene sequence. Additionally, many other proteins and regulatory sequences are involved in the proper synthesis of messenger RNA (mRNA). Regulation of transcription is responsible for the differentiation of all the different types of cells and often for the proper cellular response to environmental signals.
Transcription Can Produce Different Kinds...
138.2K
Transcription Factors02:16

Transcription Factors

70.6K
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...
70.6K
Riboswitches01:56

Riboswitches

8.0K
Riboswitches are non-coding mRNA domains that regulate the transcription and translation of downstream genes without the help of proteins. Riboswitches bind directly to a metabolite and can form unique stem-loop or hairpin structures in response to the amount of the metabolite present. They have two distinct regions – a metabolite-binding aptamer and an expression platform.
The aptamer has high specificity for a particular metabolite which allows riboswitches to specifically regulate...
8.0K
Transcription01:17

Transcription

23.9K
Transcription is the synthesis of RNA from a DNA sequence by RNA polymerase. It is the first step in producing a protein from a gene sequence. Additionally, many other proteins and regulatory sequences are involved in correctly synthesizing messenger RNA (mRNA). Transcriptional regulation is responsible for the differentiation of different types of cells and often for the proper cellular response to environmental signals.
Transcription Can Produce Different Kinds of RNA Molecules
In eukaryotes,...
23.9K
General Transcription Factors01:30

General Transcription Factors

5.9K
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...
5.9K
Regulation of Expression at Multiple Steps01:23

Regulation of Expression at Multiple Steps

1.4K
The gene expression in cells is regulated at different stages: (i) transcription, (ii) RNA processing, (iii) RNA localization, and (iv) translation. Transcriptional regulation is mediated by regulatory proteins such as transcription factors, activators, or repressors—these control gene expression by initiating or inhibiting the transcription of genes. Once a precursor or pre-mRNA is produced, it undergoes post-transcriptional modification, including 5' capping, splicing, and the...
1.4K

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関連する実験動画

Updated: Apr 30, 2026

Differentiating Functional Roles of Gene Expression from Immune and Non-immune Cells in Mouse Colitis by Bone Marrow Transplantation
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Differentiating Functional Roles of Gene Expression from Immune and Non-immune Cells in Mouse Colitis by Bone Marrow Transplantation

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リボソームタンパク質の機能的特異性は,遺伝子発現を調節する.

Suzanne Komili1, Natalie G Farny, Frederick P Roth

  • 1Department of Systems Biology, Harvard Medical School, Boston, MA 02119, USA.

Cell
|November 6, 2007
PubMed
まとめ

イーストの複製されたリボソームタンパク質は,単純な用量効果を超えて特殊な機能を示す. これらのパラログは,mRNAの翻訳,アセンブリ,および局所化において明確な役割を果たしており",リボソームコード"を示唆しています.

科学分野:

  • 分子生物学は分子生物学である.
  • 遺伝学 遺伝学とは
  • イースト生物学 イースト生物学

背景:

  • 複製された遺伝子は,しばしば,用量効果や機能的差異によって損失を回避します.
  • 酵母菌Saccharomyces cerevisiaeは,多数の複製されたリボソームタンパク質遺伝子を持っています.
  • 以前の研究では,これらの複製されたリボソームタンパク質の機能的な冗長性が示された.

研究 の 目的:

  • 局所的なmRNA,特に酵母におけるASH1mRNAの翻訳に関するパラログ特有の要件を調査する.
  • 複製されたリボソームタンパク質の発現レベルを超えた機能的特化を探求する.
  • リボソームタンパク質のパラログが細胞のプロセスと組み立てにおいて異なる役割を果たすかどうかを判断する.

主な方法:

  • 酵母におけるASH1 mRNA翻訳に関する研究.
  • 特定のリボソームタンパク質が欠けている細胞の転写およびフェノタイプのプロファイリング.
  • リボソームタンパク質のパラログ組立と局所化の分析.

主要な成果:

  • 局所的なmRNA翻訳,特に複製されたリボソームタンパク質のサブセットのためのパラログ特異的な要件が実証されています.

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Inducible and Reversible Dominant-negative DN Protein Inhibition
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Inducible and Reversible Dominant-negative DN Protein Inhibition

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関連する実験動画

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Differentiating Functional Roles of Gene Expression from Immune and Non-immune Cells in Mouse Colitis by Bone Marrow Transplantation
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Differentiating Functional Roles of Gene Expression from Immune and Non-immune Cells in Mouse Colitis by Bone Marrow Transplantation

Published on: October 1, 2012

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In Vivo Modeling of the Morbid Human Genome using Danio rerio
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In Vivo Modeling of the Morbid Human Genome using Danio rerio

Published on: August 24, 2013

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Inducible and Reversible Dominant-negative DN Protein Inhibition
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Inducible and Reversible Dominant-negative DN Protein Inhibition

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  • リボソームタンパク質パラログの機能的役割の違いがmRNAの局所化を超えて特定されました.
  • リボソームタンパク質パラログの組み立てと局所化の異なる要件が明らかになった.
  • 結論:

    • リボソームタンパク質のパラログは,特定の細胞プロセスに対する複雑な専門性を示す.
    • この発見は,タンパク質の機能と局所化を制御する"リボソームコード"の存在を裏付けている.
    • 複製されたリボソームタンパク質は完全に冗長ではなく,異なる機能的役割を持っています.