Department of Ophthalmology and Visual Sciences, Washington University School of Medicine, 660 S. Euclid Avenue, St. Louis, MO 63110, USA.
Division of Nephrology, Department of Medicine, Washington University School of Medicine, 660 S. Euclid Avenue, St. Louis, MO 63110, USA.
Curr Biol. 2017 Jul 10;27(13):2014-2022.e6. doi: 10.1016/j.cub.2017.05.066. Epub 2017 Jun 15.
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 Nesprin1α at the ciliary rootlets of photoreceptors and identify asymmetric NE aggregates of Nesprin1α 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 ∼600-kDa endogenous isoform of Nesprin1 (Nes1) and of Sun2. In agreement with the association of Nesprin1α 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.
SYNE1(核包膜 1 号)编码多个核包膜spectrin1(核包膜 spectrin 1 号)的异构体,这些异构体通过 C 端 KASH(Klarsicht/Anc1/Syne homology)结构域与核包膜(NE)结合(图 1A)[1-4]。这个结构域直接与 SUN(Sad1/Unc84)结构域相互作用,形成所谓的 LINC 复合物(核骨架和细胞骨架的连接物),跨越整个 NE 并介导核定位[10-12]。与经典的核包膜内 Nesprin1 不同,我们在这里报告根蛋白将 Nesprin1α 募集到光感受器的纤毛根部,并鉴定出 Nesprin1α 和 Sun2 的不对称 NE 聚集体,将根蛋白的细丝固定在核表面。在 NIH 3T3 细胞中,我们表明重组根蛋白细丝也通过内源性 Nesprin1 的约 600-kDa 同种型(Nes1)和 Sun2 的特异性募集,与 NE 结合。与 Nesprin1α 与光感受器纤毛根部的关联以及根蛋白和 Nesprin1 在成纤维细胞中的功能相互作用一致,我们证明了 Nesprin1 的多种异构体是多纤毛室管膜和气管细胞纤毛根部的组成部分。这些数据为纤毛根部的 Nesprin1 提供了一个新的功能范例,并表明与 SYNE1 截断突变相关的广泛人类病理学可能部分起源于纤毛缺陷。