RNAi

Gene Info

  • Species:Fly (Drosophila melanogaster)
  • GeneID:38771
  • Symbol:CG8641
  • Description:uncharacterized protein
DataSource: http://genomernai.dkfz.de/v16/genedetails/38771

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Stable_ID Entrez_ID Gene_ID Gene_Symbol Reagent_ID Score Phenotype Conditions Follow_Up Comment Screen_Title Publication_Title Authors Publication_Year Pubmed_ID Biosource Biomodel Assay Method Library Scope Reagent_Type Score_Type Cutoff Notes
GR00002-A 38771 FBgn0035733 CG8641 DRSC11028 -1.134822757 none no Lipid storage COPI complex is a regulator of lipid homeostasis. Beller et al. 2008 19067489 Cell line Kc167 Nuclear to lipid droplet cross-sectional area Fluorescence np Genome-wide dsRNA B-score > 2 OR < -1.7 Additional information about a secondary screen with non-overlaping dsRNAs
GR00002-A 38771 FBgn0035733 CG8641 DRSC11028 1.867028539 none no Lipid storage COPI complex is a regulator of lipid homeostasis. Beller et al. 2008 19067489 Cell line Kc167 Nuclear to lipid droplet cross-sectional area Fluorescence np Genome-wide dsRNA B-score > 2 OR < -1.7 Additional information about a secondary screen with non-overlaping dsRNAs
GR00031-A-1 38771 HFA11028 1 none yes Cell growth and viability (1) Genome-wide RNAi analysis of growth and viability in Drosophila cells. Boutros et al. 2004 14764878 Cell line Kc167 Cell number and viability Luminescence Custom-made (HFA) Genome-wide dsRNA Z-score >
GR00031-A-2 38771 HFA11028 -0.6 none no Cell growth and viability (2) Genome-wide RNAi analysis of growth and viability in Drosophila cells. Boutros et al. 2004 14764878 Cell line S2R+ Cell number and viability Luminescence Custom-made (HFA) Genome-wide dsRNA Z-score >
GR00134-A-1 38771 CG8641 CG8641 35993 np none no Muscle morphogenesis and function (1) Systematic genetic analysis of muscle morphogenesis and function in Drosophila. Schnorrer et al. 2010 20220848 Tissue Mef2-GAL4 Posture, locomotion, flight and viability Visual inspection np Genome-wide UAS-IR construct rp S19 > 0.5
GR00134-A-1 38771 CG8641 CG8641 35994 np none no Muscle morphogenesis and function (1) Systematic genetic analysis of muscle morphogenesis and function in Drosophila. Schnorrer et al. 2010 20220848 Tissue Mef2-GAL4 Posture, locomotion, flight and viability Visual inspection np Genome-wide UAS-IR construct rp S19 > 0.5
GR00135-A-1 38771 CG8641 CG8641 35993 -1.17 none yes Heat nociception (1) A genome-wide Drosophila screen for heat nociception identifies α2δ3 as an evolutionarily conserved pain gene. Neely et al. 2010 21074052 Organism elav-GAL4 Noxious heat avoidance and viability Fly count np Genome-wide UAS-IR construct Z-score > 1.65 Additional information about secondary screens (geotactic, phototaxis, and temperature sensitivity)
GR00135-A-1 38771 CG8641 CG8641 35994 -1.17 none yes Heat nociception (1) A genome-wide Drosophila screen for heat nociception identifies α2δ3 as an evolutionarily conserved pain gene. Neely et al. 2010 21074052 Organism elav-GAL4 Noxious heat avoidance and viability Fly count np Genome-wide UAS-IR construct Z-score > 1.65 Additional information about secondary screens (geotactic, phototaxis, and temperature sensitivity)
GR00138-A-1 38771 CG8641 35993 0.83 none no Heart development and function (1) A global in vivo Drosophila RNAi screen identifies NOT3 as a conserved regulator of heart function. Neely et al. 2010 20371351 Tissue TinCΔ4 12a-Gal4 Viability Fly count np Selected genes UAS-IR construct Developmental lethality <
GR00142-A-1 38771 CG8641 CG8641 35993 -0.107692307692307 none no Serratia marcescens infection (1) Genome-wide RNAi screen identifies genes involved in intestinal pathogenic bacterial infection. Cronin et al. 2009 19520911 Organism HSP70-GAL4; TubGAL80ts Heat shock and viability Fly count np Random genes UAS-IR construct Days life time (LT50) < -1.5 SD OR > 2 SD
GR00144-A-4 38771 CG8641 35993 0 none no not lethal Notch pathway regulation (4) Genome-wide analysis of Notch signalling in Drosophila by transgenic RNAi. Mummery-Widmer et al. 2009 19363474 Tissue pnr-GAL4 External sensory organ morphology and viability Visual inspection np Genome-wide UAS-IR construct Phenotype strength np
GR00144-A-4 38771 CG8641 35994 0 none no not lethal Notch pathway regulation (4) Genome-wide analysis of Notch signalling in Drosophila by transgenic RNAi. Mummery-Widmer et al. 2009 19363474 Tissue pnr-GAL4 External sensory organ morphology and viability Visual inspection np Genome-wide UAS-IR construct Phenotype strength np
GR00190-A-1 38771 FBgn0035733 CG8641 35993 -0.306 none no Adiposity regulation (1) Drosophila genome-wide obesity screen reveals hedgehog as a determinant of brown versus white adipose cell fate. Pospisilik et al. 2010 20074523 Organism Hsp70-GAL4;Tub-GAL80ts Total fly triglyceride expression Colorimetrics np Genome-wide UAS-IR construct Triglyceride change Z-score > 1.65 after 3 screening rounds Additional information about the primary screen
GR00218-S 38771 CG8641 AMB22964 -0.47 none no Hippo pathway regulation Salt-inducible kinases regulate growth through the Hippo signalling pathway in Drosophila Wehr et al. 2013 23263283 Cell line S2R+ Hippo pathway reporter Luminescence np Genome-wide dsRNA Z-score > 3 OR < -3 Author-submitted data. Primary screen
GR00308-A 38771 CG8641 CG8641 np 1.67 Decreased cell aggregation validated in secondary screen Cadherin-mediated cell-cell adhesion A genome-wide screen identifies conserved protein hubs required for cadherin-mediated cell–cell adhesion Toret et al. 2014 24446484 Cell line S2 Cell aggregation Fluorescence V2 RNAi library (Thermo Fisher Scientific) Genome-wide dsRNA Visual inspection; average of 3 replicates; 0 > 1.5 Additional secondary screen available. S2 cells stably express DE-cadherin.
GR00311-A 38771 FBgn0035733 CG8641 DRSC11028 np none Actin and microtubule morphology Comparative RNAi screening identifies a conserved core metazoan actinome by phenotype Rohn et al. 2011 21893601 Cell line S2R+ Alpha-tubulin and F-actin protein expression Fluorescence DRSC Genome-wide dsRNA Visual inspection np Exact phenotypes are shown in the comment section. Several genes were indicated as hits but no phenotype was provided. The screen data plus images is available at http://jcb-dataviewer.rupress.org/jcb/browse/4609/S2.
GR00315-A-1 38771 CG8641 CG8641 110183 np Effect on follicular epithelium morphology further phenotype data in classification screen Follicular epithelium development (1) A genome-scale in vivo RNAi analysis of epithelial development in Drosophila identifies new proliferation domains outside of the stem cell niche Berns et al. 2014 24762813 Tissue Escargot-GAL4 and GR1-GAL4, GR1-GAL4, traffic jam-GAL4 Follicular epithelium morphology Fluorescence VDRC KK Random genes UAS-IR construct Visual inspection np Further classification screen available, see follicular epithelium development (2).
GR00315-A-2 38771 CG8641 CG8641 110183 np Defect in formation phase Follicular epithelium development (2) A genome-scale in vivo RNAi analysis of epithelial development in Drosophila identifies new proliferation domains outside of the stem cell niche Berns et al. 2014 24762813 Tissue traffic jam-GAL4 Follicular epithelium morphology Fluorescence VDRC KK Selected genes UAS-IR construct Visual inspection np For more detailed phenotypes sp. Cell morphology was analized by aPKC and DLG protein expression. Additional validation screens available.
38771 FBgn0035733 np np sp none
GR00367-S 38771 CG8641 52260 np none VDRC Drosophila airway maturation Transient junction anisotropies orient annular cell polarization in the Drosophila airway tubes Hosono et al. 2015 26551273 Tissue btl-GAL4 Liquid clearance defect and viability Visual inspection VDRC, Trip, NIG Genome-wide UAS-IR construct Frequency >30%
GR00385-A 38771 110183 0.49459964336659357 none Regulation of olfactory memory formation Identification of genes that promote or inhibit olfactory memory formation in Drosophila. Walkinshaw et al. 2015 25644700 Organism Nsyb-GAL4 T-maze performance Visual inspection VDRC Selected genes UAS-IR construct Performance index, sp High performer in olfactory memory formation: > Genes were preselected for relevance to CNS development and function using bioinformatic criteria. Additionally, defects in wing formation are considered in the comments column. We could not confirm the exact number of primary hits; however, final hits are noted in the comments field.