铁通过活性基因素脱甲基和mTORC1驱动合成代谢
Jason S Shapiro1, Hsiang-Chun Chang1,2, Yuki Tatekoshi1
1Feinberg Cardiovascular Research Institute, Northwestern University, Chicago, IL, USA.
Nature cell biology
|September 25, 2023
概括
细胞通过一种新的途径感知铁含量,该途径涉及基因素脱甲基化. 这种机制通过控制mTORC1通路来调节合成代谢过程,这对于细胞生长至关重要.
科学领域:
- 细胞生物学 细胞生物学
- 分子生物学分子生物学
- 生物化学 生物化学
背景情况:
- 细胞需要足够的铁来进行合成代谢.
- 细胞检测铁的精确机制及其对类 anabolism 的调节仍然在很大程度上是未知的.
研究的目的:
- 为了阐明一种新的真核细胞途径来感知铁.
- 通过mTORC1通路确定将铁水平与合成过程联系起来的分子机制.
主要方法:
- 鉴定出KDM3B是一种铁结合性基因素脱甲酶.
- 研究了在特定基因增强剂中调节素H3氨酸9二甲基化 (H3K9me2).
- 在体内评估铁缺乏对白载体LAT3和RAPTOR表达和mTORC1活性的影响.
主要成果:
- 发现分子铁对于KDM3B.的活性基因素脱甲基化至关重要.
- KDM3B直接调节mTORC1通路组件,包括LAT3和RAPTOR,通过在它们的增强剂中去甲基化H3K9me2.
- 缺铁直接降低了白的可用性和RAPTOR水平,取代了mTORC1.1.的其他营养信号.
结论:
- KDM3B作为内在的铁传感器,将铁的可用性与通过激素修饰的合成控制联系起来.
- 这种铁感应途径在祖先的真核生物中得到保存,这表明在其他营养传感器的进化之前,它在营养调节中发挥了基本作用.
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