配向した細胞分裂は、組織や種を超えて基底前駆細胞を誘導し、神経拡大を調節する
Benoit Boulan1, Marine Lacomme1, Amin Benadjal2
1Cellular Neurobiology Research Unit, Institut de recherches cliniques de Montréal (IRCM), Montréal, Canada.
Science advances
|February 4, 2026
まとめ
マウスにおける神経前駆細胞分裂配向の変更は、基底前駆細胞数を大幅に増加させ、脳と網膜組織の拡大につながります。この発見は、分裂配向が
科学分野:
- 神経科学
- 発生生物学
- 遺伝学
背景:
- 神経系の拡大は、神経前駆細胞増殖に依存しています。
- 前駆細胞分裂配向の調節とその組織スケーリングにおける役割は、まだ完全には理解されていません。
- 基底分裂前駆細胞は大脳新皮質の成長に関連していますが、その起源と皮質外での機能は不明です。
主な方法:
- 紡錘体配向調節因子GPSM2およびSAPCD2の二重不活性化を有するマウスモデルを利用しました。
- 前駆細胞アイデンティティおよびシグナル伝達経路を分析するために、単一細胞RNAシーケンシングを使用しました。
- マウス、マカク、およびヒトの網膜における前駆細胞分裂パターンおよび基底前駆細胞の存在を比較しました。
結論:
- 紡錘体配向は、神経前駆細胞出力を調節する上で重要な要因です。
- 分裂配向を操作することで、神経組織成長を大幅にスケールアップできます。
- 霊長類網膜における基底前駆細胞の存在を説明する可能性がある、分裂配向における進化的違い。
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