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Publication : Multiple Isoforms of Nesprin1 Are Integral Components of Ciliary Rootlets.

First Author  Potter C Year  2017
Journal  Curr Biol Volume  27
Issue  13 Pages  2014-2022.e6
PubMed ID  28625779 Mgi Jnum  J:352721
Mgi Id  MGI:6791771 Doi  10.1016/j.cub.2017.05.066
Citation  Potter C, et al. (2017) Multiple Isoforms of Nesprin1 Are Integral Components of Ciliary Rootlets. Curr Biol 27(13):2014-2022.e6
abstractText  SYNE1 (synaptic nuclear envelope 1) encodes multiple isoforms of Nesprin1 (nuclear envelope spectrin 1) that associate with the nuclear envelope (NE) through a C-terminal KASH (Klarsicht/Anc1/Syne homology) domain (Figure 1A) [1-4]. This domain interacts directly with the SUN (Sad1/Unc84) domain of Sun proteins [5-7], a family of transmembrane proteins of the inner nuclear membrane (INM) [8, 9], to form the so-called LINC complexes (linkers of the nucleoskeleton and cytoskeleton) that span the entire NE and mediate nuclear positioning [10-12]. In a stark departure from this classical depiction of Nesprin1 in the context of the NE, we report here that rootletin recruits Nesprin1alpha at the ciliary rootlets of photoreceptors and identify asymmetric NE aggregates of Nesprin1alpha and Sun2 that dock filaments of rootletin at the nuclear surface. In NIH 3T3 cells, we show that recombinant rootletin filaments also dock to the NE through the specific recruitment of an approximately 600-kDa endogenous isoform of Nesprin1 (Nes1(600kDa)) and of Sun2. In agreement with the association of Nesprin1alpha with photoreceptor ciliary rootlets and the functional interaction between rootletin and Nesprin1 in fibroblasts, we demonstrate that multiple isoforms of Nesprin1 are integral components of ciliary rootlets of multiciliated ependymal and tracheal cells. Together, these data provide a novel functional paradigm for Nesprin1 at ciliary rootlets and suggest that the wide spectrum of human pathologies linked to truncating mutations of SYNE1 [13-15] may originate in part from ciliary defects.
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