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中文摘要
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描述(由申请人提供):核孔复合物的结构和功能对所有真核生物的细胞内组织至关重要的是大分子在细胞核和细胞质之间的准确运输,这是通过核孔复合物(NPC)的功能实现的。鼻咽癌是一个巨大的运输通道,穿过核膜的双层膜。然而,npc如何形成以及它们如何插入核膜尚不清楚。npc在许多不同的转运事件中发挥重要作用,包括信使rna从细胞核到细胞质的输出。但是,尽管它具有根本意义,信使rna通过NPC定向转运的途径仍然不明确。本研究计划的目标是阐明NPC在核膜中形成和组装的机制,并表征NPC在信使RNA输出中的作用。本提案中描述的所有实验方法都利用了蛋白质组学,基因组学和细胞生物学工具,可用于单细胞真核生物酿酒酵母。酵母提供了一个很好的模型系统来表征鼻咽癌的组成和功能,研究鼻咽癌在活细胞中的复杂组装过程,并开发新的重组分析。我们的目标是:(1)表征鼻咽癌成分Gle1和Dbp5在mRNA输出中的作用,并研究mRNA如何在鼻咽癌中单向运输。(2)研究跨膜核孔蛋白Ndc1在NPC组装和结构中的作用。(3)利用荧光法检测活细胞中鼻咽癌的生物合成,并利用确定的组分在体外重建鼻咽癌的组装步骤。我们采用创新的生物化学,遗传和细胞生物学方法的组合来解决酿酒酵母这三个具体目标。由于NPC是一个高度保守的结构,从这些研究中获得的机制见解将与包括人类在内的所有真核生物直接相关。公共卫生相关性:在所有真核生物中,通过核孔复合物调节大分子运输提供了信号转导途径和发育刺激控制差异基因表达的基本机制。此外,许多病毒靶向细胞核转运机制的组分以促进病毒繁殖,一些致癌易位涉及核孔复合物的组分以促进癌症的发展。因此,更好地了解介导核胞质转运的分子机制对于理解基本的细胞过程和开发新的抗病毒和抗癌疗法都是必不可少的。
英文摘要
DESCRIPTION (provided by applicant): STRUCTURE AND FUNCTION OF THE NUCLEAR PORE COMPLEX Of central importance to the intracellular organization of all eukaryotes is the accurate transport of macromolecules between the nucleus and the cytoplasm, which is achieved through the function of the nuclear pore complex (NPC). The NPC is an enormous transport channel that perforates the double membrane of the nuclear envelope. However, how NPCs form and how they are inserted into the nuclear membrane is not known. NPCs play an essential role in many diverse transport events including the export of messenger RNAs from the nucleus to the cytoplasm. But despite its fundamental significance, the pathway by which messenger RNAs directionally translocate through the NPC remains poorly defined. The goals of this research proposal are to elucidate the mechanism by which NPCs form and assemble in the nuclear envelope and to characterize the role of the NPC in messenger RNA export. All experimental approaches described in this proposal take advantage of the proteomic, genomic and cell biological tools available for use within the single cellular eukaryote Saccharomyces cerevisiae. Yeast provides an excellent model system to characterize the components and function of the NPC, to study the complex NPC assembly process in living cells, and to develop novel reconstitution assays. Our aims are: (1) To characterize the role of the NPC components Gle1 and Dbp5 in mRNA export and to investigate how mRNAs are unidirectionally transported across the NPC. (2) To study the role of the transmembrane nuclear pore protein Ndc1 in NPC assembly and structure. (3) To use fluorescence based assays to examine NPC biosynthesis in living cells and to reconstitute NPC assembly steps in vitro using defined components. We employ a combination of innovative biochemical, genetic and cell biological approaches to address these three specific aims in S. cerevisiae. Because the NPC is a highly conserved structure, the mechanistic insights obtained from these studies will be directly relevant to all eukaryotes, including humans. PUBLIC HEALTH RELEVANCE: In all eukaryotes, regulation of macromolecular transport through the nuclear pore complex provides an essential mechanism by which signal transduction pathways and developmental stimuli control differential gene expression. In addition, many viruses target components of the cellular nuclear transport machinery to facilitate viral propagation and several oncogenic translocations involve components of the nuclear pore complex to promote cancer development. Therefore, a better understanding of the molecular machinery that mediates nucleocytoplasmic transport is essential both for understanding fundamental cellular processes and the development of novel anti-viral and anti-cancer therapies.
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Mechanisms of gene-specific and genome-wide regulation of mRNA turnover
Spinning Disk Confocal Microscope for the University of California, Berkeley
Posttranscriptional regulation of gene expression in eukaryotes
Posttranscriptional regulation of gene expression in eukaryotes
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