{"database":"bioimages","file_versions":[],"scores":null,"additional":{"omics_type":["Unknown"],"submitter":["Aikaterini Daskalaki"],"journal":["The Journal of Cell Biology"],"full_dataset_link":["https://www.ebi.ac.uk/biostudies/studies/S-JCBD-201105166"],"attach_to":["JCB"],"legend":["Two examples of clones expressing Dli1 stained for Dl (red) and endogenous N (extracellular epitope - blue). Both examples were scanned in the apical-to-basal direction.","Two examples of clones expressing Dli1/2 stained for Dl (red) and endogenous N (extracellular epitope - blue). Both were scanned in the apical-to-basal direction.","Two examples of clones expressing DlΔC and stained for Dl (red) and endogenous N (extracellular epitope - blue). The first example was scanned in the basal-to-apical direction; the second example in the reverse direction.","Two examples of clones expressing DlΔC and EGFP-neur. Stained for Dl (red) and endogenous N (extracellular epitope - blue). EGFP-neur fluorescence in green. Both examples were scanned in the apical-to-basal direction. The large cells seen in the apical-most sections are from the peripodial membrane overlying the wing epithelium.","Two examples of clones expressing Dli1 stained for Dl (red) and endogenous N (extracellular epitope - blue). Both examples were scanned in the apical-to-basal direction. This is a supplemental image not included in the published paper.","Two examples of clones expressing Dli2 and EGFP-neur and stained for Dl (red) and endogenous N (extracellular epitope - blue). EGFP-neur fluorescence is in green. Both examples were scanned in the apical-to-basal direction.","Two examples of clones expressing DlΔC and EGFP-neur. Stained for Dl (red) and endogenous N (extracellular epitope - blue). EGFP-neur fluorescence in green. Both examples were scanned in the apical-to-basal direction. This is a supplemental image not included in the published paper.","Two examples of clones expressing DlΔC and stained for Dl (red) and endogenous N (extracellular epitope - blue). The first example was scanned in the basal-to-apical direction; the second example in the reverse direction. This is a supplemental image not included in the published paper.","Two examples of clones expressing Dli1 and EGFP-neur and stained for Dl (red) and endogenous N (extracellular epitope - blue). EGFP-neur fluorescence is in green. The first example was scanned in the apical-to-basal direction; the second example in the reverse direction.","Two examples of clones expressing Dli1/2 stained for Dl (red) and endogenous N (extracellular epitope - blue). Both were scanned in the apical-to-basal direction. This is a supplemental image not included in the published paper.","Two examples of clones expressing Dli2 and EGFP-neur and stained for Dl (red) and endogenous N (extracellular epitope - blue). EGFP-neur fluorescence is in green. Both examples were scanned in the apical-to-basal direction. This is a supplemental image not included in the published paper.","Two examples of clones expressing Dli1/2 and EGFP-neur. Stained for Dl (red) and endogenous N (extracellular epitope - blue). EGFP-neur fluorescence in green. Both example were scanned in the apical-to-basal direction. This is a supplemental image not included in the published paper.","Two examples of clones expressing Dli2 and stained for Dl (red) and endogenous N (extracellular epitope - blue). Both were scanned in the apical-to-basal direction. This is a supplemental image not included in the published paper.<br />","Two examples of clones expressing Dli1/2 and EGFP-neur. Stained for Dl (red) and endogenous N (extracellular epitope - blue). EGFP-neur fluorescence in green. Both example were scanned in the apical-to-basal direction.","Two examples of clones expressing Dli2 and stained for Dl (red) and endogenous N (extracellular epitope - blue). Both were scanned in the apical-to-basal direction.<br />","Two examples of clones expressing Dli1 and EGFP-neur and stained for Dl (red) and endogenous N (extracellular epitope - blue). EGFP-neur fluorescence is in green. The first example was scanned in the apical-to-basal direction; the second example in the reverse direction. This is a supplemental image not included in the published paper."],"repository":["bioimages"],"figure_sub":["Image 17922 (Figure 5 - B)","Image 17920 (Figure 5 - E)","Image 17925 (Figure 5 - C)","Image 17924 (Figure 5 - C)","Image 17931 (Figure 5 - D)","Image 17919 (Figure 5 - A)","Image 17930 (Figure 5 - D)","Image 17933 (Figure 5 - H)","Figure 5 - A","Image 17927 (Figure 5 - G)","Image 17918 (Figure 5 - A)","Figure 5 - F","Image 17929 (Figure 5 - F)","Figure 5 - G","Figure 5 - H","Figure 5 - B","Figure 5 - C","Figure 5 - D","Figure 5 - E","Figure 5","Image 17926 (Figure 5 - G)","Image 17921 (Figure 5 - E)","Image 17932 (Figure 5 - H)","Image 17928 (Figure 5 - F)","Image 17923 (Figure 5 - B)"],"pubmed_authors":["George D. Tsibidis","Nevine A. Shalaby","Kristina Kux","Marc A.T. Muskavitch","Aikaterini Daskalaki","Christos Delidakis","Giorgos Tsoumpekos"],"additional_accession":[]},"is_claimable":false,"name":"Distinct intracellular motifs of Delta mediate its ubiquitylation and activation by Mindbomb1 and Neuralized","description":null,"dates":{"release":"2011-12-12T11:22:10Z","modification":"2018-11-29T11:22:10Z","creation":"2018-11-29T11:22:10Z"},"accession":"S-JCBD-201105166","cross_references":{"doi":["10.1083/jcb.201105166"]}}