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Publication : Nesprin 1α2 is essential for mouse postnatal viability and nuclear positioning in skeletal muscle.

First Author  Stroud MJ Year  2017
Journal  J Cell Biol Volume  216
Issue  7 Pages  1915-1924
PubMed ID  28533284 Mgi Jnum  J:246890
Mgi Id  MGI:5921352 Doi  10.1083/jcb.201612128
Citation  Stroud MJ, et al. (2017) Nesprin 1alpha2 is essential for mouse postnatal viability and nuclear positioning in skeletal muscle. J Cell Biol 216(7):1915-1924
abstractText  The position of the nucleus in a cell is controlled by interactions between the linker of nucleoskeleton and cytoskeleton (LINC) complex and the cytoskeleton. Defects in nuclear positioning and abnormal aggregation of nuclei occur in many muscle diseases and correlate with muscle dysfunction. Nesprin 1, which includes multiple isoforms, is an integral component of the LINC complex, critical for nuclear positioning and anchorage in skeletal muscle, and is thought to provide an essential link between nuclei and actin. However, previous studies have yet to identify which isoform is responsible. To elucidate this, we generated a series of nesprin 1 mutant mice. We showed that the actin-binding domains of nesprin 1 were dispensable, whereas nesprin 1alpha2, which lacks actin-binding domains, was crucial for postnatal viability, nuclear positioning, and skeletal muscle function. Furthermore, we revealed that kinesin 1 was displaced in fibers of nesprin 1alpha2-knockout mice, suggesting that this interaction may play an important role in positioning of myonuclei and functional skeletal muscle.
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