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    Identification of Novel (<em>R</em>NAi <em>De</em>ficient) Genes in <em>C. elegans</em>: A Dissertation

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    Authors
    Chen, Chun-Chieh G.
    Faculty Advisor
    Craig C. Mello
    Academic Program
    Interdisciplinary Graduate Program
    UMass Chan Affiliations
    RNA Therapeutics Institute
    Document Type
    Doctoral Dissertation
    Publication Date
    2006-09-26
    Keywords
    RNA Interference
    Caenorhabditis elegans
    Nucleotidyltransferases
    Caenorhabditis elegans Proteins
    Models
    Biological
    Amino Acids, Peptides, and Proteins
    Animal Experimentation and Research
    Enzymes and Coenzymes
    Nucleic Acids, Nucleotides, and Nucleosides
    
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    Abstract
    RNA interference or RNAi was first discovered as an experimental approach that induces potent sequence-specific gene silencing. Remarkably, subsequent studies on dissecting the molecular mechanism of the RNAi pathway reveal that RNAi is conserved in most eukaryotes. In addition, genes and mechanisms related to RNAi are employed to elicit the regulation of endogenous gene expression that controls a variety of important biological processes. To investigate the mechanism of RNAi in the nematode C. elegans, we performed genetic screens in search of RNAi deficient mutants (rde). Here I report the summary of the genetic screens in search of rde mutants as well as the identification of two novel genes required for the RNAi pathway, rde-3 and rde-8. In addition, we demonstrate that some of the rde genes, when mutated, render the animals developmentally defective, suggesting that these rde genes also function in developmental gene regulation. This work presents novel insights on the components of the RNAi pathway and the requirement of these components in the regulation of endogenous gene expression.
    DOI
    10.13028/9g8t-0p92
    Permanent Link to this Item
    http://hdl.handle.net/20.500.14038/31565
    Rights
    Copyright is held by the author, with all rights reserved.
    ae974a485f413a2113503eed53cd6c53
    10.13028/9g8t-0p92
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    Morningside Graduate School of Biomedical Sciences Dissertations and Theses

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