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Regulation of RNA processing on the mitochondrial surface by lipid signaling

Regulation of RNA processing on the mitochondrial surface by lipid signaling
通过脂质信号传导调节线粒体表面的 RNA 加工
批准号:
8915211
负责人:
Michael A. Frohman
金额:
$30.02万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-09-01 至 2017-08-31

项目摘要

项目成果

Michael A. Frohman的其他基金

相关文献

中文摘要
翻译
描述(由申请人提供):线粒体,曾经被视为细胞的“简单”动力室,越来越多地被认为参与许多不同的细胞生物学过程,这些过程涉及与非线粒体细胞器如内质网和质膜的相互作用。这些相互作用部分地通过线粒体表面上产生和感测蛋白质和脂质信号的机制发生,这一直是我们在线粒体动力学(融合)和响应细胞外信号事件的能量变化的背景下关注的领域。我们最近的工作揭示了线粒体在一种特殊形式的RNA加工中的新作用,这种RNA加工似乎发生在线粒体表面和并列的RNA颗粒之间的界面上。更具体地说,我们已经将线粒体表面上的信号传导酶与第三种类型的RNAi piRNA的产生联系起来,piRNA是一种电子致密结构,称为nuage,类似于P体。使用细胞生物学,在文化和动物模型的方法,我们建议研究如何在线粒体表面的脂质信号促进线粒体和RNA加工复合物之间的这种新发现的物理和功能的相互作用,通过潜在的机制,可能包括驱动蛋白调节的运输RNA,加工颗粒和微管上的线粒体。相关性:这个最初的故事适用于精子发生的关键途径,与男性不育有关,并提供了一种新型男性避孕药的机会。然而,其他类型的RNA募集和线粒体表面的加工是已知的,并代表了一个更广泛的背景下,这种新发现的途径可能是重要的,包括与间充质干细胞,脑和心脏功能,和癌症。
英文摘要
DESCRIPTION (provided by applicant): Mitochondria, once viewed as the "simple" powerhouse of the cell, are increasingly recognized to be involved in many different cell biological processes that involve interaction with non-mitochondrial organelles such as the endoplasmic reticulum and plasma membrane. These interactions take place in part via machinery on the mitochondrial surface that generates and senses protein and lipid signals, which has been an area of focus for us in the context of mitochondrial dynamics (fusion) and changes in energetic in response to extracellular signaling events. Our recent work has uncovered a new role for mitochondria in a specialized form of RNA processing that appears to take place at the interface between the mitochondrial surface and juxtaposed RNA granules. More specifically, we have linked a signaling enzyme on the mitochondrial surface to the production of piRNAs, a third type of RNAi, in an electron-dense structure known as nuage that is similar to P-bodies. Using cell biological, in culture, and animal model approaches, we propose to study how lipid signaling at the mitochondrial surface promotes this newly identified physical and functional interaction between mitochondria and RNA-processing complexes via underlying mechanisms that potentially include kinesin-regulated trafficking of RNAs, processing granules and mitochondria on microtubules. Relevance: This initial story applies to a pathway that is critical for spermatogenesis, has relevance to male infertility, and offers opportunities fr a novel type of male contraceptive. However, other types of RNA recruitment to and processing at the mitochondrial surface are known and represent a broader context in which this newly identified pathway will likely be important, including in connection to mesenchymal stem cells, brain and cardiac function, and cancer.
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Regulation of RNA processing on the mitochondrial surface by lipid signaling
Regulation of RNA processing on the mitochondrial surface by lipid signaling
Regulation of RNA processing on the mitochondrial surface by lipid signaling
Regulation of RNA processing on the mitochondrial surface by lipid signaling