SUN1 Interacts with Nuclear Lamin A and Cytoplasmic Nesprins To Provide a Physical Connection between the Nuclear Lamina and the Cytoskeleton
SUN1 Interacts with Nuclear Lamin A and Cytoplasmic Nesprins To Provide a Physical Connection between the Nuclear Lamina and the Cytoskeleton
Nuclear migration and positioning within cells are critical for many developmental processes and are governed by the cytoskeletal network. Although mechanisms of nuclear-cytoskeletal attachment are unclear, growing evidence links a novel family of nuclear envelope (NE) proteins that share a conserved C-terminal SUN (Sad1/UNC-84 homology) domain. Analysis of Caenorhabditis elegans mutants has implicated UNC-84 in actin-mediated nuclear positioning by regulating NE anchoring of a giant actin-binding protein, ANC-1. Here, we report the identification of SUN1 as a lamin A-binding protein in a yeast two-hybrid screen. We demonstrate that SUN1 is an integral membrane protein located at the inner nuclear membrane. While the N-terminal domain of SUN1 is responsible for detergent-resistant association with the nuclear lamina and lamin A binding, lamin A/C expression is not required for SUN1 NE localization. Furthermore, SUN1 does not interact with type B lamins, suggesting that NE localization is ensured by binding to an additional nuclear component(s), most likely chromatin. Importantly, we find that the luminal C-terminal domain of SUN1 interacts with the mammalian ANC-1 homologs nesprins 1 and 2 via their conserved KASH domain. Our data provide evidence of a physical nuclear-cytoskeletal connection that is likely to be a key mechanism in nuclear-cytoplasmic communication and regulation of nuclear position.
- King's College London United Kingdom
- Cambridge University Hospitals NHS Foundation Trust United Kingdom
- Kings College London, University of London United Kingdom
- Addenbrooke's Hospital United Kingdom
- University of Cambridge United Kingdom
Cell Nucleus, Cytoplasm, Blotting, Western, Molecular Sequence Data, Nuclear Proteins, Nerve Tissue Proteins, Fibroblasts, Lamin Type A, 530, Models, Biological, Cytoskeletal Proteins, Mice, Microscopy, Fluorescence, Cell Line, Tumor, NIH 3T3 Cells, Animals, Humans, Amino Acid Sequence, Fluorescent Antibody Technique, Indirect, Microtubule-Associated Proteins, Cytoskeleton
Cell Nucleus, Cytoplasm, Blotting, Western, Molecular Sequence Data, Nuclear Proteins, Nerve Tissue Proteins, Fibroblasts, Lamin Type A, 530, Models, Biological, Cytoskeletal Proteins, Mice, Microscopy, Fluorescence, Cell Line, Tumor, NIH 3T3 Cells, Animals, Humans, Amino Acid Sequence, Fluorescent Antibody Technique, Indirect, Microtubule-Associated Proteins, Cytoskeleton
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