LlamaTags: 生きた胚における画像転写因子ダイナミクスの汎用ツール
Jacques P Bothma1, Matthew R Norstad1, Simon Alamos2
1Department of Molecular & Cell Biology, UC Berkeley, Berkeley, CA 94720, USA.
Cell
|May 15, 2018
まとめ
LlamaTagは 生きた胚の転写因子のダイナミクスを視覚化するために開発され, ゆっくりとした光タンパク質の成熟を克服しました これは,遺伝子転写と核間信号伝達に関連した転写因子濃度のストキャスティック爆発を明らかにした.
科学分野:
- 発達生物学
- 分子生物学
- 遺伝学
背景:
- 転写因子は 胚細胞の運命を 素早く決定します
- 発光タンパク質の成熟が遅いため,体内での転写因子の動態を視覚化することは困難です.
研究 の 目的:
- 生きた胚の転写因子の動態を視覚化するための新しいタンパク質タグを開発する.
- 転写因子濃度の動態と遺伝子転写との相関性を調査する.
主な方法:
- 成熟した光タンパク質に結合し 成熟の限界を回避する タンパク質タグを開発しました
- 転写因子濃度の動態をリアルタイムで視覚化するために,Drosophila melanogaster胚にLlamaTagを導入しました.
主要な成果:
- 転写因子濃度のストキャスティック爆発が遺伝子転写の爆発と相関していることが発見されました.
- 核タンパク質の濃度が隣接する核の転写によって影響され,核間信号伝達が示唆されていることを実証した.
- 生きた胚の中央ドグマに沿った情報の流れを視覚化しました.
結論:
- LlamaTagは,生きた胚の転写因子のダイナミクスをリアルタイムで可視化します.
- ストキャスティックバーストと核間シグナル伝達は遺伝子発現の調整と 鋭い発現境界の定義の鍵となるメカニズムです
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