LHX2 と LDB1 を媒介するトランス相互作用は,嗅覚受容体の選択を調節する
Kevin Monahan1, Adan Horta2, Stavros Lomvardas3,4,5
1Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY, USA.
Nature
|January 11, 2019
まとめ
ネズミの嗅覚神経は 独特のゲノム組織を示しています 特定の染色体間の接触は,染色体間の嗅覚受容体遺伝子をリンクし,
科学分野:
- ゲノミクス
- 分子生物学
- 細胞生物学
背景:
- ゲノムはトポロジカルに関連した領域とゲノムコンパートメントに分かれています.
- DNA構造は通常,異なる染色体上の遺伝子間の相互作用を制限します.
研究 の 目的:
- ネズミの嗅覚神経細胞の 核組織を調べるため
- 嗅覚受容体の遺伝子調節メカニズムを特定する
主な方法:
- in situ Hi-Cを使用してクロマチンの形状を捕捉する.
- 嗅覚神経細胞と原始細胞の光活性化された細胞分類
主要な成果:
- 18の染色体からの嗅覚受容体遺伝子クラスターは,特定の染色体間の接触を形成する.
- これらの接触は細胞の分化とともに増加し",ギリシャ島"強化剤によって媒介されます.
- 多染色体スーパーエンハンスターが形成され,活性嗅覚受容体遺伝子と結合する.
結論:
- マウスの嗅覚神経は トランス相互作用による 独特の核構造を示しています
- インターゲン強化剤 ("ギリシャ島") と転写因子 (LHX2,LDB1) は,これらの接触を通して嗅覚受容体遺伝子発現をオーケストラします.
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