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Nuclear export of RNAs by nuclear envelope budding

Nuclear export of RNAs by nuclear envelope budding
通过核膜出芽实现 RNA 的核输出
批准号:
8739689
负责人:
VIVIAN G. BUDNIK
金额:
$33.17万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-09-30 至 2017-06-30

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中文摘要
翻译
描述(由申请人提供):该项目的长期目标是描述一种新的超大核糖核蛋白颗粒(MegaRNPs)核包装和出口的途径及其对突触组装的影响。细胞生物学的一个长期信条是,所有的核质运输都是通过核孔复合体(NPC)进行的。然而,使用果蝇神经肌肉接头(NMJ)作为模型系统,我们最近发现了巨型RNPs核输出的另一种途径。这种不依赖于NPC的途径有可能从根本上改变我们对核质通讯的理解。在这一途径中,转录产物被包装在细胞核内的megaRNPs中,并通过核膜萌发将其输出到细胞质,这一过程类似于疱疹病毒的核出口。拟议的项目代表了一种深刻的方法来理解这一途径对细胞生物学的影响,重点是突触的形成。我们将研究megaRNPs的蛋白质和mRNA组成,并确定megaRNPs是多个mRNAs物种的组合还是单个mRNAs物种的组合。我们将在果蝇中使用分子遗传学工具来确定megaRNP组成在转录定位和正确的突触组装中的意义。我们还将确定核膜萌发和NPC依赖的mRNA输出模式之间的关系。最后,我们将开始分析哺乳动物细胞中的核膜萌发途径。这些研究可能会改变我们对大的RNP运输颗粒是如何以及在哪里形成的理解,这对于理解细胞大分子复合体的精确极化组装是必不可少的。此外,这些研究还将阐明新的生物途径,这些途径几乎肯定会导致新的临床策略,用于治疗椎板肥厚,如Emery-Dreifuss肌营养不良症、运动障碍,如肌张力障碍和疱疹病毒感染。
英文摘要
DESCRIPTION (provided by applicant): The long-term goal of this project is to characterize a novel pathway for the nuclear packaging and export of ultra-large ribonucleoprotein granules (megaRNPs) and its impact on synapse assembly. A long-standing tenet of cellular biology has been that all nucleo-cytoplasmic traffic takes place through the nuclear pore complex (NPC). Using the Drosophila neuromuscular junction (NMJ) as a model system, however, we recently uncovered an alternative pathway for the nuclear export of megaRNPs. This NPC- independent pathway has the potential to fundamentally change our understanding of nucleo-cytoplasmic communication. In this pathway, transcripts are packaged in megaRNPs within the nucleus and are exported to the cytoplasm by budding through nuclear envelope membranes in a process akin to the nuclear egress of Herpes-type viruses. The proposed project represents an incisive approach to understand the impact of this pathway on cellular biology, with a focus on synapse formation. We will investigate the protein and mRNA composition of megaRNPs, and determine if megaRNPs are assemblages of multiple or single mRNAs species. We will use molecular genetic tools in Drosophila to determine the significance of megaRNP composition in transcript localization and proper synapse assembly. We will also determine the relationship between nuclear envelope budding and NPC-dependent modes of mRNA export. Finally, we will begin an analysis of the nuclear envelope budding pathway in mammalian cells. These studies are likely to be paradigm-shifting for our understanding of how and where large RNP transport granules are formed, which is elemental to the understanding of how the precise polarized assembly of cellular macromolecular complexes is achieved. In addition, these studies will elucidate novel biological pathways that will almost certainly lead to new clinical strategies for the treatment of laminophathies such as Emery-Dreifuss muscular dystrophy, movement disorders such as dystonia, and Herpes virus-type infections.
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Nuclear export of RNAs by nuclear envelope budding
Nuclear export of RNAs by nuclear envelope budding
Nuclear export of RNAs by nuclear envelope budding
The Frizzled Nuclear Import Pathway in Synapse Development
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