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Showing 1 to 4 of 4 for “"Cajal body"”.

  1. Analysis of the Role of Akirin Interactions with Nuclear Body Proteins During Myogenesis

    … and splicing machinery, specifically the Cajal Body (CB) and Histone Locus Body (HLB). Through <em>Drosophila</em> embryo immunostaining for myosin heavy chain and green fluorescent protein, interactions between Akirin and Mute, a component of the HLB, as well as interactions between …

    kennesaw Repository record for Analysis of the Role of Akirin Interactions with Nuclear Body Proteins During Myogenesis (opens in a new tab)

  2. Nucleolar Stress Due to Depletion of Nopp140 in Drosophila melanogaster

    … show that depletion of the related nucleolar and Cajal body phospho-protein, Nopp140, in Drosophila melanogaster led to nucleolar stress and eventual lethality when multiple tissues were depleted of Nopp140 by RNAi. We used TEM, immuno-blot analysis, and metabolic protein labeling to show the loss …

    lsu-thes Repository record for Nucleolar Stress Due to Depletion of Nopp140 in Drosophila melanogaster (opens in a new tab)

  3. A Cell Biological Determination of Integrator Subunit Localization

    … of discrete subnuclear localization (i.e. to Cajal bodies) of any of the subunits could provide important clues to the function of that subunit. In this study, we used a cell biological approach to determine the localization of the 14 Integrator subunits. <strong>We hypothesized that the …

    uthsc Repository record for A Cell Biological Determination of Integrator Subunit Localization (opens in a new tab)

  4. Biophysical and gene expression change in living cells by force-induced mechanotransduction

    … displacements of coilin and SMN proteins in Cajal bodies and direct dissociation of coilin-SMN associated complexes. Fluorescence resonance energy transfer changes of coilin-SMN depend on force magnitude, an intact F-actin, cytoskeletal tension, Lamin A/C, or substrate rigidity. Other protein …

    uiuc Repository record for Biophysical and gene expression change in living cells by force-induced mechanotransduction (opens in a new tab)