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Cytoplasmic Capes Are Nuclear Envelope Intrusions That Are Enriched in Endosomal Proteins and Depend upon βH-Spectrin and Annexin B9

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2014

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Public Library of Science
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Wu, Juan, Katelyn J. Bakerink, Meagan E. Evangelista, and Graham H. Thomas. 2014. “Cytoplasmic Capes Are Nuclear Envelope Intrusions That Are Enriched in Endosomal Proteins and Depend upon βH-Spectrin and Annexin B9.” PLoS ONE 9 (4): e93680. doi:10.1371/journal.pone.0093680. http://dx.doi.org/10.1371/journal.pone.0093680.

Abstract

It is increasingly recognized that non-erythroid spectrins have roles remote from the plasma membrane, notably in endomembrane trafficking. The large spectrin isoform, βH, partners with Annexin B9 to modulate endosomal processing of internalized proteins. This modulation is focused on the early endosome through multivesicular body steps of endocytic processing and loss of either protein appears to cause a traffic jam before removal of ubiquitin at the multivesicular body. We previously reported that βH/Annexin B9 influenced EGF receptor signaling. While investigating this effect we noticed that mSptiz, the membrane bound precursor of the secreted EGF receptor ligand sSpitz, is located in striking intrusions of the nuclear membrane. Here we characterize these structures and identify them as ‘cytoplasmic capes’, which were previously identified in old ultrastructural studies and probably coincide with recently recognized sites of non-nuclear-pore RNA export. We show that cytoplasmic capes contain multiple endosomal markers and that their existence is dependent upon βH and Annexin B9. Diminution of these structures does not lead to a change in mSpitz processing. These results extend the endosomal influence of βH and its partner Annexin B9 to this unusual compartment at the nuclear envelope.

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Biology and Life Sciences, Anatomy, Biological Tissue, Epithelium, Epithelial Cells, Cell Biology, Cell Physiology, Membrane Trafficking, Cellular Structures and Organelles, Cell Nucleus, Cytoskeleton, Cellular Types, Molecular Cell Biology, Signal Transduction, Genetics, Gene Function, Organisms, Animals, Invertebrates, Arthropoda, Insects, Drosophila, Drosophila Melanogaster, Model Organisms, Animal Models

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