<HashMap><database>bioimages</database><scores/><additional><omics_type>Unknown</omics_type><submitter>Azusa Hotta</submitter><journal>The Journal of Cell Biology</journal><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-JCBD-200910095</full_dataset_link><attach_to>JCB</attach_to><legend>MCF-10Aeco cells expressing EB1-GFP and RFP-LL5α were cocultured with parental non-fluorescent cells on glass-bottomed dishes (fluorescent:non-fluorescent cells=1:10). Z-scanning images from the apical (bottom of the Z-axis here) to basal planes (top of the Z axis) of the cell were collected using a Revolution XD system.</legend><legend>MCF-10Aeco cells expressing GFP-α-tubulin and RFP-LL5α were seeded on glass-bottomed dishes at a low density and cultured overnight. Time-lapse images of the cells were collected at 2.5-min intervals for 8 h 6 min using a DeltaVision Core system. During the time-lapse imaging, the cells divided into two daughter cells. The RFP-LL5α patches disappear when the cells become detached from the glass at the onset of cell division, and reappear soon after the cells adhere to the glass. Pixel Size: z=0.127, y=0.127 m; Time intervals: 2.5 min.</legend><legend>Mouse mammary tissues were immunostained for b-catenin (Cy2, 488 nm laser), LL5α (rhodamine red-X, 543 nm laser) and integrin a6 (Cy5, 633 nm laser), and observed using a confocal laser-scanning microscope system. Pixel Size: z=0.09, y=0.09 um.</legend><legend>MCF-10A cells were fixed and stained for LL5s (Cy5, 633 nm laser), integrin a3 (rhodamine red-X, 543 nm laser) and integrin a6 (Cy2, 488 nm laser), and observed using a confocal laser-scanning microscope system. Pixel Size: z=0.04, y=0.04 um.</legend><legend>Mouse small intestine were immunostained for laminin (Cy2, 488 nm laser), LL5a (rhodamine red-X, 543 nm laser) and integrin a6 (Cy5, 633 nm laser), and observed using a confocal laser-scanning microscope system. Pixel Size: z=0.45, y=0.45 um.</legend><legend>MCF-10A cells were fixed and immunostained for LL5b (Cy5, 633 nm laser), laminin-5 (rhodamine red-X, 543 nm laser) and integrin a6 (Cy2, 488 nm laser), and observed using a confocal laser-scanning microscope system. Pixel Size: z=0.07, y=0.07 um.</legend><legend>MCF-10A cells were fixed and stained for LL5s (Cy5, 633 nm laser), laminin-5 (Cy2, 488 nm laser) and integrin a3 (rhodamine red-X, 543 nm laser), and observed using a confocal laser-scanning microscope system. Pixel Size: z=0.04, y=0.04 um.</legend><legend>At 3 h after seeding on coverslips, MCF-10Aeco cells were fixed and immunostained for tubulin (Cy2, 488 nm laser), EB1 (rhodamine red-X, 543 nm laser) and LL5s (Cy5, 633 nm laser), and observed using a LSM510 confocal laser-scanning microscope system.</legend><legend>Mouse mammary tissues were immunostained for laminin (Cy2, 488 nm laser), LL5a (rhodamine red-X, 543 nm laser) and integrin a6 (Cy5, 633 nm laser), and observed using a confocal laser-scanning microscope system. Pixel Size: z=0.09, y=0.09 um.</legend><repository>bioimages</repository><figure_sub>Figure 3 - Dc</figure_sub><figure_sub>Figure 3 - Db</figure_sub><figure_sub>Image 16728 (Figure 3 - Db)</figure_sub><figure_sub>Figure 3 - Da</figure_sub><figure_sub>Figure 8 - C</figure_sub><figure_sub>Image 16799 (Figure 1 - Dc)</figure_sub><figure_sub>Figuer 4 - Ba</figure_sub><figure_sub>Image 16765 (Figuer 4 - Bb)</figure_sub><figure_sub>Figuer 4 - Bb</figure_sub><figure_sub>Video 4 - None</figure_sub><figure_sub>Image 16710 (Figure 3 - Da)</figure_sub><figure_sub>Figure 1 - Dc</figure_sub><figure_sub>Figuer 4 - D</figure_sub><figure_sub>Figure 8</figure_sub><figure_sub>Figuer 4</figure_sub><figure_sub>Image 16772 (Figuer 4 - D)</figure_sub><figure_sub>Image 16751 (Figuer 4 - Ba)</figure_sub><figure_sub>Image 16735 (Figure 3 - Dc)</figure_sub><figure_sub>Video 4</figure_sub><figure_sub>Figure 1</figure_sub><figure_sub>Image 17585 (Figure 8 - C)</figure_sub><figure_sub>Image 16705 (Video 4 - None)</figure_sub><figure_sub>Figure 3</figure_sub><pubmed_authors>Tomomi Kawakatsu</pubmed_authors><pubmed_authors>Tomoya Nakatani</pubmed_authors><pubmed_authors>Tomoko Hamaji</pubmed_authors><pubmed_authors>Taiko Sukezane</pubmed_authors><pubmed_authors>Azusa Hotta</pubmed_authors><pubmed_authors>Chiyuki Matsui</pubmed_authors><pubmed_authors>Anna Akhmanova</pubmed_authors><pubmed_authors>Toshitaka Sato</pubmed_authors><pubmed_authors>Yuko Mimori-Kiyosue</pubmed_authors><pubmed_authors>Tsuyoshi Akagi</pubmed_authors><pubmed_authors>Yoshimi Takai</pubmed_authors><pubmed_authors>Ilya Grigoriev</pubmed_authors></additional><is_claimable>false</is_claimable><name>Laminin-based cell adhesion anchors microtubule plus ends to the epithelial cell basal cortex through LL5α/β</name><description/><dates><release>2010-05-31T11:19:01Z</release><modification>2018-11-29T11:19:01Z</modification><creation>2018-11-29T11:19:01Z</creation></dates><accession>S-JCBD-200910095</accession><cross_references><doi>10.1083/jcb.200910095</doi></cross_references></HashMap>