通过对一个关键的线粒体转录因子的双重抑制来控制介质进入
Amanda J Su1, Siri C Yendluri1, Elçin Ünal1
1Department of Molecular and Cell Biology, University of California, Berkeley, Berkeley, United States.
eLife
|February 27, 2024
概括
发芽酵母SBF转录因子的活动在介质进入期间受到两个机制的限制,防止过早激活并确保细胞周期的正常进展. 这种调节对于及时的介质进入和基因表达至关重要.
科学领域:
- 细胞生物学 细胞生物学
- 分子生物学分子生物学
- 遗传学 遗传学 是一个
背景情况:
- 从线粒分裂过渡到半分裂过渡涉及显著的基因表达变化.
- 在这种过渡过程中,对线粒体转录机制的调节还不太清楚.
- 转录因子SBF和MBF驱动了发芽酵母中的线粒基因表达程序.
研究的目的:
- 为了研究调节SBF活动的机制,在芽酵母的线粒分裂-变质过渡期间.
- 了解细胞如何确保及时进入半变异和适当的基因表达.
主要方法:
- 研究了Swi4子单元抑制和Whi5抑制在控制SBF活动中的作用.
- 分析了不及时SBF激活对介质基因表达和进入时间的影响.
- 研究了SBF目标G1环林,Ime1和Ume6.6之间的相互作用.
主要成果:
- 两种机制限制了SBF活动:基于LUTI的Swi4和Whi5抑制.
- 过早的SBF激活导致早期介质基因的下调和延迟的介质进入.
- SBF目标G1环林干扰Ime1-Ume6相互作用,导致这些缺陷.
结论:
- 这项研究阐明了SWI4在建立介质转录程序中的作用.
- 基于LUTI的监管集成到更广泛的网络中,以控制SBF活动.
- 适当调节SBF对于及时的介质进入和成功的雌性体形成至关重要.
关键词:
卢蒂·卢蒂 (LUTI) 是一个古老的城市.它们中的一种是S. cerevisiae.细胞循环中的细胞循环.染色体是一种染色体.基因表达的基因表达方式介质变化 (meiosis) 是一种变质的过程.发生线粒分裂 (mitosis).转录因子的转录因子在 uORF 的情况下.更多相关视频
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