FIGURE

Fig. 2

ID
ZDB-FIG-170418-3
Publication
Sundaravel et al., 2015 - Reduced DOCK4 expression leads to erythroid dysplasia in myelodysplastic syndromes
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Fig. 2

In vivo suppression of dock4a in a zebrafish model leads to dysplastic erythroid cells. (A) Shown are representative embryos following staining at 48 hpf with o-dianisidine to detect hemoglobin (red stain). (Top) Embryos were injected with 5 ng of standard control MO. Arrows indicate blood circulation through the caudal hematopoietic tissue, cardinal vein, and heart, with substantial staining in the sinus venosus on the yolk sac. (Lower) Embryos were injected with 5 ng of the dock4a SB MO, and at 48 hpf, they lack blood circulation and appear relatively pale with less blood in the yolk sac (n = 30 embryos for both panels). (B) Relative percentages of erythroid cells in zebrafish embryos were determined by flow cytometry comparing dock4a knockdown with control samples (with the later set to 100%). Use of gata1:dsred transgenic zebrafish embryos allowed direct assessment of erythroid cells in samples of dissociated whole embryos’ blood (n = 4 independent experiments, minimum of 200 embryos per experiment). (C) Photomicrographs of benzidine- and hematoxylin-positive erythroid cells from cytospins prepared using cells from dissociated zebrafish embryos. (Scale bars, 5 μm.) (D) BF and fluorescence images of RFP-expressing erythroid cells depicting circular- and irregular-shaped morphology harvested from embryos with reduced expression of Dock4a. (E) Quantitation of RFP-positive embryonic zebrafish blood cells that are circular or irregular in shape based on analysis of BF and RFP images using the ImageStreamX instrument. KD, knockdown. (F) Percentages of circular- and irregular-shaped erythroid cells harvested from dissociated zebrafish embryos 48 hpi of dock4a SB MO or control MO or from uninjected embryos (**P < 0.005, Student’s t test).

Expression Data

Expression Detail
Antibody Labeling
Phenotype Data
Fish:
Knockdown Reagent:
Observed In:
Stage: Long-pec

Phenotype Detail
Acknowledgments
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