<HashMap><database>bioimages</database><scores/><additional><omics_type>Unknown</omics_type><submitter>Arundhati Sengupta Ghosh</submitter><journal>The Journal of Cell Biology</journal><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-JCBD-201103153</full_dataset_link><attach_to>JCB</attach_to><legend>Tuj1 staining in DLK (-/-) DRG explants. Caspase 9 is activated in many axons after 8 hours of NGF withdrawal in WT and cJun (lox/lox) neurons, but no activation is observed in DLK-/- neurons.</legend><legend>Immunohistochemical staining of lumbar level DRG from E17.5 DLK (-/-) littermates with a Pan-Trk antibody. DLK (-/-) DRGs (B) appear larger and contain more Trk positive neurons than WT controls (A).</legend><legend>Activated Caspase 9 staining in DLK (-/-) DRG explants. Caspase 9 is activated in many axons after 8 hours of NGF withdrawal in WT and cJun (lox/lox) neurons, but no activation is observed in DLK (-/-) neurons.</legend><legend>Activated Caspase 9 staining in cJun (lox/lox) DRG explants. Caspase 9 is activated in many axons after 8 hours of NGF withdrawal in WT and cJun (lox/lox) neurons.</legend><legend>Tuj1 staining in cJUN (lox/lox) DRG explants. Caspase 9 is activated in many axons after 8 hours of NGF withdrawal in WT and cJun (lox/lox) neurons.</legend><legend>Immunohistochemical staining of lumbar level DRG from E17.5 WT (DLK+/+) littermates with a Pan-Trk antibody. DLK (-/-) DLK (-/-) DRGs (B) appear larger and contain more Trk positive neurons than WT controls (A).</legend><legend>Activated Caspase 9 staining in DRG explants from cJun WT  DRG explants. Caspase 9 is activated in many axons after 8 hours of NGF withdrawal in c Jun WT neurons.</legend><legend>Tuj1 staining in DRG explants from cJun WT. Caspase 9 is activated in many axons after 8 hours of NGF withdrawal in cJun WT neurons.</legend><repository>bioimages</repository><figure_sub>Fig 6 - O</figure_sub><figure_sub>Image 32183 (Fig 6 - O)</figure_sub><figure_sub>Fig 6 - M</figure_sub><figure_sub>Fig 6 - N</figure_sub><figure_sub>Image 32176 (Fig 6 - M)</figure_sub><figure_sub>Fig 7 - A</figure_sub><figure_sub>Fig 7 - B</figure_sub><figure_sub>Fig 7</figure_sub><figure_sub>Fig 6</figure_sub><figure_sub>Image 32179 (Fig 6 - N)</figure_sub><figure_sub>Image 32180 (Fig 6 - O)</figure_sub><figure_sub>Image 32177 (Fig 6 - M)</figure_sub><figure_sub>Image 32182 (Fig 7 - B)</figure_sub><figure_sub>Image 32181 (Fig 7 - A)</figure_sub><figure_sub>Image 32178 (Fig 6 - N)</figure_sub><pubmed_authors>Ryan J. Watts</pubmed_authors><pubmed_authors>Christine D. Pozniak</pubmed_authors><pubmed_authors>Bei Wang</pubmed_authors><pubmed_authors>Mark Chen</pubmed_authors><pubmed_authors>Arundhati Sengupta Ghosh</pubmed_authors><pubmed_authors>Joseph W. Lewcock</pubmed_authors></additional><is_claimable>false</is_claimable><name>DLK induces developmental neuronal degeneration via selective regulation of proapoptotic JNK activity</name><description/><dates><release>2011-09-05T11:22:03Z</release><modification>2018-11-29T11:22:03Z</modification><creation>2018-11-29T11:22:03Z</creation></dates><accession>S-JCBD-201103153</accession><cross_references><doi>10.1083/jcb.201103153</doi></cross_references></HashMap>