哺乳類の胚形成における成熟ゲメトの3D染色体構造と構造再プログラム
Yuwen Ke1, Yanan Xu2, Xuepeng Chen1
1CAS Key Laboratory of Genome Sciences and Information, Collaborative Innovation Center of Genetics and Development, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing, China; University of Chinese Academy of Sciences, Beijing, China.
Cell
|July 15, 2017
まとめ
早期の哺乳類の胚の発達には,重要なクロマチンの改造が伴う. この研究は,トポロジカルに関連したドメイン (TADs) を含む3Dクロマチンの構造が,胚の初期段階からゲメットからどのように確立されるかを明らかにしています.
科学分野:
- ゲノミクス
- 発達生物学
- エピジェネティクス
背景:
- 高次クロマチンの構造は遺伝子調節に不可欠です.
- 哺乳類の胚の発達中の3Dクロマチンの動的変化はよく理解されていません.
研究 の 目的:
- マウスのゲメットと初期の胚の3D染色体構造を調査する.
- 早期発達の過程でクロマチン構造の確立と再プログラムを理解する.
主な方法:
- 低細胞サンプルに適した最適化されたHi-C技術を使用した.
- マウスの卵細胞,精子,卵胞,初期胚におけるクロマチンの相互作用を分析した.
主要な成果:
- 成熟した卵子はトポロジカルに関連したドメイン (TAD) を欠いている.
- 精子は頻繁に長距離と染色体間の相互作用を示します.
- ジゴットと初期の胚の染色体構造は,最初は不明であり,TADは徐々に再構築される.
- TADの確立にはDNAの複製が必要ですが,ジゴティックゲノムの活性化は必要ありません.
- 非メチル化CpGはA区画で濃縮され,メチル化はB区画よりもA区画で減少する.
結論:
- 哺乳類の発達初期にクロマチンの構造が全体的に再プログラムされる.
- この発見は,胚形成中のゲノムのダイナミックな調節に関する洞察を提供します.
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