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锚蛋白-G 在肌节处的新相互作用:肌肉特异性的遮蔽蛋白/肌联蛋白结合相关结构域(OTBD)结合网蛋白和细丝蛋白 C。

Novel interactions of ankyrins-G at the costameres: the muscle-specific Obscurin/Titin-Binding-related Domain (OTBD) binds plectin and filamin C.

机构信息

INSERM, UMR-S 665, Paris, F-75015, France.

出版信息

Exp Cell Res. 2011 Apr 1;317(6):724-36. doi: 10.1016/j.yexcr.2011.01.002. Epub 2011 Jan 9.

Abstract

Ankyrins, the adapters of the spectrin skeleton, are involved in local accumulation and stabilization of integral proteins to the appropriate membrane domains. In striated muscle, tissue-dependent alternative splicing generates unique Ank3 gene products (ankyrins-G); they share the Obscurin/Titin-Binding-related Domain (OTBD), a muscle-specific insert of the C-terminal domain which is highly conserved among ankyrin genes, and binds obscurin and titin to Ank1 gene products. We previously proposed that OTBD sequences constitute a novel domain of protein-protein interactions which confers ankyrins with specific cellular functions in muscle. Here we searched for muscle proteins binding to ankyrin-G OTBD by yeast two hybrid assay, and we found plectin and filamin C, two organizing elements of the cytoskeleton with essential roles in myogenesis, muscle cell cytoarchitecture, and muscle disease. The three proteins coimmunoprecipitate from skeletal muscle extracts and colocalize at costameres in adult muscle fibers. During in vitro myogenesis, muscle ankyrins-G are first expressed in postmitotic myocytes undergoing fusion to myotubes. In western blots of subcellular fractions from C2C12 cells, the majority of muscle ankyrins-G appear associated with membrane compartments. Occasional but not extensive co-localization at nascent costameres suggested that ankyrin-G interactions with plectin and filamin C are not involved in costamere assembly; they would rather reinforce stability and/or modulate molecular interactions in sarcolemma microdomains by establishing novel links between muscle-specific ankyrins-G and the two costameric dystrophin-associated glycoprotein and integrin-based protein complexes. These results report the first protein-protein interactions involving the ankyrin-G OTBD domain and support the hypothesis that OTBD sequences confer ankyrins with a gain of function in vertebrates, bringing further consolidation and resilience of the linkage between sarcomeres and sarcolemma.

摘要

锚蛋白是血影蛋白骨架的接头,参与将整合蛋白局部积累和稳定到适当的膜域。在横纹肌中,组织依赖性的选择性剪接产生独特的 Ank3 基因产物(ankyrin-G);它们共享 Obscurin/Titin-Binding-related Domain(OTBD),这是 C 末端结构域中的一个肌肉特异性插入物,在锚蛋白基因中高度保守,并将 obscurin 和 titin 与 Ank1 基因产物结合。我们之前提出,OTBD 序列构成了蛋白质-蛋白质相互作用的一个新结构域,赋予锚蛋白在肌肉中的特定细胞功能。在这里,我们通过酵母双杂交实验搜索与锚蛋白-G OTBD 结合的肌肉蛋白,发现 plectin 和 filamin C,这两种细胞骨架的组织元件在肌发生、肌肉细胞细胞结构和肌肉疾病中具有重要作用。这三种蛋白质从骨骼肌提取物中共免疫沉淀,并在成年肌肉纤维的 Costameres 中共定位。在体外肌发生过程中,肌肉锚蛋白-G 首先在经历融合成肌管的有丝分裂后肌细胞中表达。在 C2C12 细胞的亚细胞部分的 Western blot 中,大多数肌肉锚蛋白-G 似乎与膜隔室相关联。偶尔但不广泛的共定位在初生 Costameres 表明,ankyrin-G 与 plectin 和 filamin C 的相互作用不参与 Costamere 组装;它们更倾向于通过在肌节微域中建立新的联系,来加强稳定性和/或调节肌肉特异性 ankyrin-G 与两个 Costameric dystrophin 相关糖蛋白和基于整合素的蛋白复合物之间的分子相互作用。这些结果报告了第一个涉及 ankyrin-G OTBD 结构域的蛋白-蛋白相互作用,并支持 OTBD 序列赋予脊椎动物锚蛋白获得功能的假说,进一步巩固和恢复肌节和肌膜之间的联系。

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