subject: Drosophila date: 2017
10.4231/R7M043DC
David Umulis
,
Matthew Pharris
,
Tamara Kinzer-Ursem
,
Tzu-Ching Wu
,
Vikki Weake
,
Xinping Chen
,
Xu Wang
04/19/2017
Supplemental data and full source code for smFISH analysis in Drosophila melanogaster adult photoreceptor neurons.
10.4231/R7TD9V91
Jingqun Ma
,
Vikki Marie Weake
02/06/2017
Supporting and raw data for Figures 1, 2, 3 and Table 1 from: Ma, J. and Weake, V.M. (2014). Affinity-based isolation of tagged nuclei from Drosophila tissues for gene expression analysis. Journal of Visualized Experiments 85. PMID:24686501.
Biochemistry cell-type specific Drosophila Gene Expression nuclei affinity purification nuclei isolation
10.4231/R7PG1PQR
Jingqun Ma
,
Pete E Pascuzzi
,
Vikki Marie Weake
02/20/2017
Supporting and raw data for Figures 1 - 5 and Figure S1 from: Ma et al. (2016) Transcriptome Profiling Identifies Multiplexin as a target of SAGA Deubiquitinase Activity in Glia.... G3 (Bethesda). PMID: 27261002.
axon guidance Biochemistry Drosophila glia Neuroscience nonstop RNA_seq SAGA sgf11 Transcriptome
10.4231/R7222RS4
Donald Ready
,
Taylor Zigon
,
Vikki Weake
,
Walter Leon-Salas
,
Xinping Chen
06/23/2017
This publication contains the software required to build an optical stimulator for fruit flies. The stimulator uses red and blue light-emitting diodes (LEDs) and an embedded computer to generate light at different power density levels.
Biomedical Engineering Drosophila Embedded Software Embedded System Engineering Technology Optical Stimulation Python Code
10.4231/R73N21JG
Donald Ready
,
Taylor Zigon
,
Vikki Weake
,
Walter Leon-Salas
,
Xinping Chen
06/27/2017
This publication contains the electronic files required to build an optical stimulator for fruit flies. The stimulator uses red and blue light-emitting diodes (LEDs) and an embedded computer to generate light at different power density levels.
Biomedical Engineering Drosophila Embedded Software Embedded System Engineering Technology Optical Stimulation Python Code
10.4231/R74Q7S5J
11/03/2017
Supporting and raw data for Figures 1 - 5 from Stegeman R. et al. (2016). The Spliceosomal Protein SF3B5 is a Novel Component of Drosophila SAGA that Functions in Gene Expression Independent of Splicing. Journal of Molecular Biology. PMID: 27185460.
Biochemistry Drosophila Gene Expression SAGA Splicing Transcription
10.4231/R7X34VNF
Donald Ready
,
Hana Hall
,
Jeffrey Simpson
,
Vikki Weake
,
Walter Leon-Salas
,
Xinping Chen
10/30/2017
Supporting confocal and electron microscopy images for Fig 4 from Chen et al. (2017). "Cytochrome b5 protects photoreceptors from light stress-induced lipid peroxidation and retinal degeneration"
Biochemistry Drosophila Lipid Peroxidation Phototoxicity Retinal Degeneration
10.4231/R7JS9NMW
Donald Ready
,
Hana Hall
,
Jeffrey Simpson
,
Vikki Weake
,
Walter Leon-Salas
,
Xinping Chen
10/30/2017
Supporting microscopy images for Fig 1 from Chen et al. (2017). "Cytochrome b5 protects photoreceptors from light stress-induced lipid peroxidation and retinal degeneration"
Biochemistry Drosophila Lipid Peroxidation Phototoxicity Retinal Degeneration
10.4231/R7F18WWG
Donald Ready
,
Hana Hall
,
Jeffrey Simpson
,
Vikki Weake
,
Walter Leon-Salas
,
Xinping Chen
10/30/2017
Supporting confocal microscopy images for Fig 2 and Fig 5 from Chen et al. (2017). "Cytochrome b5 protects photoreceptors from light stress-induced lipid peroxidation and retinal degeneration"
Biochemistry Drosophila Lipid Peroxidation Phototoxicity Retinal Degeneration
10.4231/R7HT2MG2
Donald Ready
,
Hana Hall
,
Jeffrey Simpson
,
Vikki Weake
,
Walter Leon-Salas
,
Xinping Chen
10/30/2017
Supporting electron microscopy images for Fig 3 (part 2) from Chen et al. (2017). "Cytochrome b5 protects photoreceptors from light stress-induced lipid peroxidation and retinal degeneration"
Biochemistry Drosophila Lipid Peroxidation Phototoxicity Retinal Degeneration
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