<HashMap><database>bioimages</database><scores/><additional><omics_type>Unknown</omics_type><submitter>Henning F. Horn</submitter><journal>The Journal of Cell Biology</journal><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-JCBD-201304004</full_dataset_link><attach_to>JCB</attach_to><legend>Low magnification view of a testis section from a wild-type mouse stained with anti-gH2AX (red) and DAPI (blue).</legend><legend>Wild-type leptotene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red).  Images were obtained by structured illumination microscopy.  A projection of the original stack is shown here.</legend><legend>Wild-type zygotene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red). Images were obtained by deconvolution microscopy. The original stack is shown here.</legend><legend>Spermatocyte spreads from Kash5-null mice were immunostained with anti-SCP3 (red) and anti-SUN1 (green).  A projection of the original stack is shown here.</legend><legend>Wild-type pachytene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red). Images were obtained by deconvolution microscopy. A projection of the original stack is shown here.</legend><legend>Spermatocyte spreads were immunostained for KASH5 (green) and SCP3 (red).  Samples were imaged by conventional deconvolution microscopy.  The original stack is shown here.</legend><legend>Spermatocyte spreads from wild-type mice were immunostained with anti-SCP3 (red) and anti-SUN1 (green).  The original stack is shown here.</legend><legend>Wild-type spermatocyte spread immunostained with anti-Sun1 (green) and anti-Dynein (red).  DAPI is shown in blue.  This image corresponds to bottom row of images.</legend><legend>Wild-type zygotene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red). Images were obtained by deconvolution microscopy. A projection of the original stack is shown here.</legend><legend>Testes sections from KASH5-null mice were immunostained with anti-SCP1 (green) and anti-SCP3 (red) antibodies and visualized using a Zeiss LSM510 confocal microscope.  DNA is labeled in blue.</legend><legend>Immunoblot of testes tissue lysates were probed with anti-LaminB1 as a loading control .Lanes 2, 3, and 4 represent wild-type, Kash5-het, and Kash5-null samples.</legend><legend>Wild-type spermatocyte spreads were immunostained with anti-Sun1 (red) antibody and labeled for telomeres using Tel-FISH (green).  DNA is labeled in blue.</legend><legend>Spermatocyte spreads from wild-type mice were immuonstained with anti-SCP3 (green) and anti-Rad51 (red) antibodies and visualized using the DeltaVision deconvolution microscope.  The majority of SCP3-positive cells are in the pachytene stage and have resolved most of the Rad51 foci.  These images are after deconvolution.</legend><legend>Spermatocyte spreads derived from KASH5-null mice were immunstained with anti-SCP1 (green) and anti-SCP3 (red) antibodies and visualised using structured illumination microscopy.  The full stack is shown here.</legend><legend>Wild-type leptotene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red). Images were obtained by deconvolution microscopy. The original stack is shown here.</legend><legend>Spermatocyte spreads from Kash5-null mice were immunostained with anti-SCP3 (red) and anti-SUN1 (green). The original stack is shown here.</legend><legend>Kash5-null spermatocyte spread immunostained with anti-Sun1 (green) and anti-Dynein (red). DAPI is shown in blue.</legend><legend>Spermatocyte spreads from wild-type mice were immunostained with anti-SCP3 (green) and anti-Rad51 (red) antibodies and visualized using a DeltaVision deconvolution microscope.  In spreads from wild-type animals, only the occasional cell is positive for both proteins, which corresponds to the cells in leptotene/zygotene stage.  These images are prior to deconvolution.</legend><legend>Spermatocyte spreads from wild-type mice were immunostained with anti-SCP3 (red) and anti-SUN1 (green).  A projection of the original stack is shown here.</legend><legend>Low magnification view of a testis sections from a KASH5-null mouse stained with anti-gH2AX (red) and DAPI (blue).</legend><legend>Wild-type leptotene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red). Images were obtained by structured illumination microscopy. The original stack is shown here.</legend><legend>Wild-type zygotene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red). Images were obtained by structured illumination microscopy. The original stack is shown here.</legend><legend>Testes sections from wild-type mice were immunostained with anti-SCP1 (green) and anti-SCP3 (red) antibodies and visualized using a Zeiss LSM510 confocal microscope. DNA is labeled in blue.</legend><legend>Spermatocyte spreads from wild-type mice were immuonstained with anti-SCP3 (green) and anti-Rad51 (red) antibodies and visualized using the DeltaVision deconvolution microscope.  The majority of SCP3-positive cells are in the pachytene stage and have resolved most of the Rad51 foci.  These images are prior to deconvolution.</legend><legend>Wild-type pachytene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red). Images were obtained by structured illumination microscopy. The original stack is shown here.</legend><legend>Wild-type leptotene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red).  Images were obtained by deconvolution microscopy.  The original stack is shown here.</legend><legend>Spermatocyte spreads from KASH5-null mice were immunostained with anti-SCP3 (green) and anti-Rad51 (red) antibodies and visualized using a DeltaVision deconvolution microscope.  These images are after deconvolution.</legend><legend>Wild-type spermatocyte spread immunostained with anti-Sun1 (green) and anti-Dynein (red). DAPI is shown in blue. This image corresponds to top row of images.</legend><legend>Wild-type leptotene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red). Images were obtained by deconvolution microscopy. A projection of the original stack is shown here.</legend><legend>Wild-type pachytene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red). Images were obtained by deconvolution microscopy. The original stack is shown here.</legend><legend>Immunoblot of testes tissue lysates were probed with anti-KASH5 antibody. Lanes 2, 3, and 4 represent wild-type, Kash5-het, and Kash5-null samples.</legend><legend>High magnification view of a testis section from a KASH5-null mouse stained with anti-gH2AX (red) and DAPI (blue).</legend><legend>Spermatocyte spreads were immunostained for KASH5 (green) and SCP3 (red).  Samples were imaged by conventional deconvolution microscopy.  A projection  of the original stack is shown here.</legend><legend>Wild-type leptotene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red). Images were obtained by structured illumination microscopy. A projection of the original stack is shown here.</legend><legend>Spermatocyte spreads derived from KASH5-null mice were immunstained with anti-SCP1 (green) and anti-SCP3 (red) antibodies and visualised using structured illumination microscopy.  A projection of the full stack is shown here.</legend><legend>Wild-type zygotene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red). Images were obtained by structured illumination microscopy. A projection of the original stack is shown here.</legend><legend>Wild-type leptotene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red).  Images were obtained by deconvolution microscopy.  A projection of the original stack is shown here.</legend><legend>Wild-type testes section immunostained with anti-SCP3 (red) and anti-centromere CREST  (green) auto-antibody.  DNA is stained in blue.</legend><legend>Spermatocyte spreads were immunostained with anti-KASH5 (green) and anti-SCP3 (red) and visualized using structured illumination microscopy.  A projection of the full stack is shown here.</legend><legend>Spermatocyte spreads were immunostained with anti-KASH5 (green) and anti-SCP3 (red) and visualized using structured illumination microscopy.  The full stack is shown here.</legend><legend>High magnification view of a testis section from a wild-type mouse stained with anti-gH2AX (red) and DAPI (blue).</legend><legend>Wild-type spermatocytes stained with anti-SCP1 (green) and anti-SCP3 (red).  A projection of the full stack is shown here.</legend><legend>Wild-type pachytene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red). Images were obtained by structured illumination microscopy. A projection of the original stack is shown here.</legend><legend>Spermatocyte spreads from wild-type mice were immunostained with anti-SCP3 (green) and anti-Rad51 (red) antibodies and visualized using a DeltaVision deconvolution microscope. In spreads from wild-type animals, only the occasional cell is positive for both proteins, which corresponds to the cells in leptotene/zygotene stage.  These images are after deconvolution.</legend><legend>Spermatocyte spreads derived from wild-type mice were immunstained with anti-SCP1 (green) and anti-SCP3 (red) antibodies and visualised using structured illumination microscopy.  A full stack is shown here.</legend><legend>Kash5-null testes section immunostained with anti-SCP3 ((red) and anti-centromere CREST (green) auto-antibody.  DNA is labeled in blue.</legend><legend>Spermatocyte spreads from wild-type mice were immunostained with anti-SCP3 (red) and anti-KASH5 (green).  A projection of the original stack is shown here.</legend><legend>Spermatocyte spreads from wild-type mice were immunostained with anti-SCP3 (red) and anti-KASH5 (green).   The original stack is shown here.</legend><legend>Spermatocyte spreads from KASH5-null mice were immunostained with anti-SCP3 (green) and anti-Rad51 (red) antibodies and visualized using a DeltaVision deconvolution microscope.  These images are prior to deconvolution.</legend><legend>Spermatocyte spreads derived from wild-type mice were immunstained with anti-SCP1 (green) and anti-SCP3 (red) antibodies and visualised using structured illumination microscopy.  A projection of the full stack is shown here.</legend><legend>Kash5-null spermatocyte spreads were immunostained with anti-Sun1 (red) antibody and labeled for telomeres using Tel-FISH (green). DNA is labeled in blue.</legend><legend>Wild-type leptotene spermatocyte stained with anti-KASH5 (green) and anti-SCP3 (red).  Images were obtained by structured illumination microscopy.  The original stack is shown here.</legend><legend>Wild-type spermatocytes stained with anti-SCP1 (green) and anti-SCP3 (red).  The full stack is shown here.</legend><repository>bioimages</repository><figure_sub>Image 292609 (Figure 5 - B)</figure_sub><figure_sub>Supplemental Figure 3 - D'</figure_sub><figure_sub>Supplemental Figure 5</figure_sub><figure_sub>Figure 8 - A</figure_sub><figure_sub>Figure 8 - B</figure_sub><figure_sub>Supplemental Figure 3</figure_sub><figure_sub>Image 292365 (Supplemental Figure 3 - D)</figure_sub><figure_sub>Image 292622 (Supplemental Figure 3 - C')</figure_sub><figure_sub>Figure 7 - A</figure_sub><figure_sub>Image 292322 (Figure 5 - C)</figure_sub><figure_sub>Figure 7 - B</figure_sub><figure_sub>Image 292630 (Supplemental Figure 5 - None)</figure_sub><figure_sub>Image 292332 (Figure 6 - A)</figure_sub><figure_sub>Image 292615 (Figure 7 - B)</figure_sub><figure_sub>Image 292611 (Figure 5 - B)</figure_sub><figure_sub>Image 292333 (Figure 6 - B)</figure_sub><figure_sub>Image 292623 (Supplemental Figure 3 - C')</figure_sub><figure_sub>Image 292628 (Supplemental Figure 3 - F')</figure_sub><figure_sub>Image 292632 (Figure 7 - A)</figure_sub><figure_sub>Image 292353 (Figure 8 - A)</figure_sub><figure_sub>Supplemental Figure 3 - E'</figure_sub><figure_sub>Image 292644 (Figure 5 - B)</figure_sub><figure_sub>Supplemental Figure 3 - A'</figure_sub><figure_sub>Image 292372 (Supplemental Figure 3 - F)</figure_sub><figure_sub>Image 292629 (Supplemental Figure 3 - F')</figure_sub><figure_sub>Image 292361 (Supplemental Figure 3 - C)</figure_sub><figure_sub>Image 292643 (Figure 4 - D)</figure_sub><figure_sub>Image 292357 (Supplemental Figure 3 - B)</figure_sub><figure_sub>Image 292624 (Supplemental Figure 3 - D')</figure_sub><figure_sub>Image 292352 (Figure 8 - A)</figure_sub><figure_sub>Image 292621 (Supplemental Figure 3 - B')</figure_sub><figure_sub>Image 292319 (Figure 5 - A)</figure_sub><figure_sub>Image 292617 (Figure 7 - B)</figure_sub><figure_sub>Image 292368 (Supplemental Figure 3 - E)</figure_sub><figure_sub>Image 292631 (Supplemental Figure 5 - None)</figure_sub><figure_sub>Image 292619 (Supplemental Figure 3 - A')</figure_sub><figure_sub>Image 292616 (Figure 7 - B)</figure_sub><figure_sub>Supplemental Figure 5 - None</figure_sub><figure_sub>Image 292642 (Figure 4 - D)</figure_sub><figure_sub>Figure 3 - D</figure_sub><figure_sub>Image 292331 (Figure 6 - A)</figure_sub><figure_sub>Supplemental Figure 3 - F'</figure_sub><figure_sub>Image 292321 (Figure 5 - C)</figure_sub><figure_sub>Image 292627 (Supplemental Figure 3 - E')</figure_sub><figure_sub>Supplemental Figure 3 - B'</figure_sub><figure_sub>Image 292334 (Figure 6 - B)</figure_sub><figure_sub>Image 292634 (Figure 7 - A)</figure_sub><figure_sub>Image 292354 (Figure 8 - B)</figure_sub><figure_sub>Figure 3 - C</figure_sub><figure_sub>Image 292320 (Figure 5 - A)</figure_sub><figure_sub>Image 292639 (Figure 6 - D)</figure_sub><figure_sub>Image 292364 (Supplemental Figure 3 - D)</figure_sub><figure_sub>Image 292373 (Supplemental Figure 3 - F)</figure_sub><figure_sub>Image 292614 (Figure 7 - B)</figure_sub><figure_sub>Image 292318 (Figure 3 - C)</figure_sub><figure_sub>Figure 4 - D</figure_sub><figure_sub>Image 292317 (Figure 3 - C)</figure_sub><figure_sub>Supplemental Figure 3 - B</figure_sub><figure_sub>Image 292369 (Supplemental Figure 3 - E)</figure_sub><figure_sub>Image 292638 (Figure 6 - D)</figure_sub><figure_sub>Supplemental Figure 3 - C</figure_sub><figure_sub>Figure 5 - A</figure_sub><figure_sub>Image 292610 (Figure 5 - B)</figure_sub><figure_sub>Supplemental Figure 3 - A</figure_sub><figure_sub>Image 292641 (Figure 6 - D)</figure_sub><figure_sub>Supplemental Figure 3 - F</figure_sub><figure_sub>Image 292608 (Figure 3 - D)</figure_sub><figure_sub>Supplemental Figure 3 - C'</figure_sub><figure_sub>Image 292413 (Supplemental Figure 3 - A)</figure_sub><figure_sub>Supplemental Figure 3 - D</figure_sub><figure_sub>Supplemental Figure 3 - E</figure_sub><figure_sub>Image 292412 (Supplemental Figure 3 - A)</figure_sub><figure_sub>Image 292618 (Supplemental Figure 3 - A')</figure_sub><figure_sub>Figure 5 - B</figure_sub><figure_sub>Figure 5 - C</figure_sub><figure_sub>Image 292637 (Figure 6 - D)</figure_sub><figure_sub>Image 292613 (Figure 7 - B)</figure_sub><figure_sub>Image 292607 (Figure 3 - D)</figure_sub><figure_sub>Figure 5</figure_sub><figure_sub>Image 292612 (Figure 7 - B)</figure_sub><figure_sub>Figure 4</figure_sub><figure_sub>Image 292640 (Figure 6 - D)</figure_sub><figure_sub>Figure 7</figure_sub><figure_sub>Figure 6</figure_sub><figure_sub>Figure 8</figure_sub><figure_sub>Image 292626 (Supplemental Figure 3 - E')</figure_sub><figure_sub>Image 292360 (Supplemental Figure 3 - C)</figure_sub><figure_sub>Figure 6 - D</figure_sub><figure_sub>Figure 6 - A</figure_sub><figure_sub>Figure 6 - B</figure_sub><figure_sub>Image 292625 (Supplemental Figure 3 - D')</figure_sub><figure_sub>Image 292356 (Supplemental Figure 3 - B)</figure_sub><figure_sub>Figure 3</figure_sub><figure_sub>Image 292636 (Figure 6 - D)</figure_sub><figure_sub>Image 292620 (Supplemental Figure 3 - B')</figure_sub><pubmed_authors>Brian Burke</pubmed_authors><pubmed_authors>Dae In Kim</pubmed_authors><pubmed_authors>Kyle J. Roux</pubmed_authors><pubmed_authors>Esther Sook Miin Wong</pubmed_authors><pubmed_authors>Henning F. Horn</pubmed_authors><pubmed_authors>Colin L. Stewart</pubmed_authors><pubmed_authors>Graham D. Wright</pubmed_authors></additional><is_claimable>false</is_claimable><name>A mammalian KASH domain protein coupling meiotic chromosomes to the cytoskeleton</name><description/><dates><release>2013-09-23T11:25:09Z</release><modification>2018-11-29T11:25:09Z</modification><creation>2018-11-29T11:25:09Z</creation></dates><accession>S-JCBD-201304004</accession><cross_references><doi>10.1083/jcb.201304004</doi></cross_references></HashMap>