4.4 Article

Using RNA Interference to Identify Specific Modifiers of a Temperature-Sensitive, Embryonic-Lethal Mutation in the Caenorhabditis elegans Ubiquitin-Like Nedd8 Protein Modification Pathway E1-Activating Gene rfl-1

Journal

GENETICS
Volume 182, Issue 4, Pages 1035-1049

Publisher

GENETICS SOCIETY AMERICA
DOI: 10.1534/genetics.109.104885

Keywords

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Funding

  1. NICHD NIH HHS [T32 HD007348] Funding Source: Medline
  2. NIGMS NIH HHS [GM058017, R01 GM058017] Funding Source: Medline

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The essential Caenorhabditis elegans gene rfl-1 encodes one subunit of a heterodimeric El-activating enzyme in the Nedd8 ubiquitin-like protein conjugation pathway. This pathway,ay modifies the Cullin scaffolds of E3 ubiquitin ligases with a single Nedd8 moiety to promote ligase function. To identify genes that influence neddylation, we used a synthetic screen to identify genes that, when depleted with RNAi, enhance or suppress the embryonic lethality caused by or 198ts, a temperature-sensitive (ts) mutation in rfl-1. We identified reproducible suppressor and enhancer genes and employed a systematic specificity analysis for each modifier using four unrelated is embryonic lethal mutants. Results of this analysis highlight die importance of specificity controls in identifying genetic interactions relevant to a particular biological process because 8/14 enhancers and 7/21 suppressors modified lethality in other mutants. Depletion of the strongest specific suppressors rescued the early embryonic cell division defects in rfl-1(or198ts) mutants. RNAi knockdown of some specific suppressors partially restored Cullin neddylation in rfl-1/(or198ts) mutants, consistent with their gene products normally opposing neddylation, and GFP fusions to several suppressors were detected in die cytoplasin or the nucleus, similar in pattern to Nedd8 conjugation pathway components in early embryonic cells. In contrast, depletion of the two strongest specific enhancers did not affect file early embryonic cell division defects observed in rfl-1(or198ts) mutants, suggesting that they may act at later times in other essential processes. Many of the specific modifiers are conserved in other organisms, and most are nonessential. Thus, when controlled properly for specificity, modifier screens using conditionally lethal G. elegans mutants can identify roles for nonessential but conserved genes in essential processes.

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