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首页> 外文期刊>Journal of Cell Science >Nesprin-2 is a multi-isomeric protein that binds lamin and emerin at the nuclear envelope and forms a subcellular network in skeletal muscle
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Nesprin-2 is a multi-isomeric protein that binds lamin and emerin at the nuclear envelope and forms a subcellular network in skeletal muscle

机译:Nesprin-2是一种多异构蛋白,在核被膜处结合lamin和emerin,并在骨骼肌中形成亚细胞网络

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Nesprin-2 is a multi-isomeric, modular protein composed of variable numbers of spectrin-repeats linked to a C-terminal transmembrane domain and/or to N-terminal paired calponin homology (CH) domains. The smaller isoforms of nesprin-2 co-localize with and bind lamin A and emerin at the inner nuclear envelope (NE). In SW-13 cells, which lack lamin A/C, nesprin-2 epitopes and emerin were both mislocalized and formed aggregates in the endoplasmic reticulum (ER). The larger isoforms and other CH-domain-containing isoforms co-localize with heterochromatin within the nucleus and are also present at the outer NE and in multiple cytoplasmic compartments. Nesprin-2 isoforms relocalize during in vitro muscle differentiation of C2C12 myoblasts to the sarcomere of myotubes. Immunogold electron microscopy using antibodies specific for three different epitopes detected nesprin-2 isoforms at multiple locations including intranuclear foci, both membranes of the NE, mitochondria, sarcomeric structures and plasma membrane foci. In adult skeletal muscle, confocal immunolocalization studies demonstrated that nesprin-2 epitopes were present at the Z-Iine and were also associated with the sarcoplasmic reticulum (SR) in close apposition to SERCA2. These data suggest that nesprin-2 isoforms form a linking network between organelles and the actin cytoskeleton and thus may be important for maintaining sub-cellular spatial organisation. Moreover, its association at the NE with lamin and emerin, the genes mutated in Emery-Dreifuss muscular dystrophy, suggests a mechanism to explain how disruption of the NE leads to muscle dysfunction.
机译:Nesprin-2是一种多异构的,模块化的蛋白,由可变数量的血影蛋白重复序列​​组成,这些重复序列与C端跨膜结构域和/或N端配对的钙还原蛋白同源性(CH)域连接。 nesprin-2的较小同工型在核内膜(NE)与lamin A和emerin共定位并结合。在缺乏lamin A / C的SW-13细胞中,nesprin-2表位和emerin都错位并在内质网(ER)中形成聚集体。较大的同工型和其他含CH结构域的同工型与异染色质在细胞核中共定位,并且也存在于外部NE和多个细胞质区室中。 Nesprin-2亚型在C2C12成肌细胞体外分化为肌管的肌小节期间重新定位。使用对三种不同表位具有特异性的抗体进行的免疫金电子显微镜检查,在多个位置检测到了nesprin-2亚型,包括核内灶,NE膜,线粒体,肌节结构和质膜灶。在成年骨骼肌中,共聚焦免疫定位研究表明,nesprin-2表位存在于Z-Iine处,并且还与SERCA2紧密并列的肌浆网(SR)相关。这些数据表明,nesprin-2同工型形成细胞器和肌动蛋白细胞骨架之间的连接网络,因此对于维持亚细胞的空间组织可能很重要。此外,其在NE与lamin和emerin(在Emery-Dreifuss肌营养不良症中突变的基因)的关联,提示了一种机制来解释NE的破坏如何导致肌肉功能障碍。

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