Duval M, Ma X, Valet J P, Vincent M
CHUL Research Center and Department of Medicine, Laval University, Ste-Foy, Québec, Canada.
Biochem Cell Biol. 1995 Sep-Oct;73(9-10):651-7. doi: 10.1139/o95-072.
IFAPa-400, a 400-kDa developmentally regulated protein thought to be associated with intermediate filaments, has been purified from chick embryo hearts to investigate its interaction with vimentin and other IF proteins and to identify other cellular components to which this cytoskeletal protein associates. Previous studies suggested that this protein was associated with the vimentin-containing intermediate filament lattice of myoblasts and neuroblasts before their terminal differentiation, providing these cells with a particular intermediate filament cytoskeleton that could satisfy specific mechanical requirements during their intense morphogenetic activities. Although IFAPa-400 partially reassociated with vimentin and desmin in disassembly-reassembly experiments using crude IF preparations from chick embryo hearts, in vitro recombination of purified IFAPa-400 with vimentin and desmin failed to demonstrate any direct association. When purified IFAPa-400 was used as a probe in blot overlay assays, however, specific binding to vimentin and desmin was observed, providing the first evidence of a physical association between IFAPa-400 and intermediate filament proteins. The blot overlay experiments also demonstrated that IFAPa-400 binds to two unidentified polypeptides of 19 and 32 kDa. These results are thus consistent with the hypothesis that a structural lattice requiring a vimentin-IFAPa-400 combination constitutes the intermediate filament system of myogenic and neurogenic cells.
IFAPa - 400是一种分子量为400 kDa的、在发育过程中受调控的蛋白质,被认为与中间丝相关。为了研究它与波形蛋白及其他中间丝蛋白的相互作用,并确定与这种细胞骨架蛋白相关的其他细胞成分,我们从鸡胚心脏中纯化了IFAPa - 400。先前的研究表明,在成肌细胞和成神经细胞终末分化之前,这种蛋白质与含有波形蛋白的中间丝晶格相关,为这些细胞提供了一种特殊的中间丝细胞骨架,使其在强烈的形态发生活动中能够满足特定的机械需求。尽管在使用鸡胚心脏粗制中间丝制剂进行的拆解 - 重组实验中,IFAPa - 400能与波形蛋白和结蛋白部分重新结合,但纯化的IFAPa - 400与波形蛋白和结蛋白的体外重组未能证明有任何直接关联。然而,当在印迹覆盖分析中使用纯化的IFAPa - 400作为探针时,观察到它与波形蛋白和结蛋白有特异性结合,这为IFAPa - 400与中间丝蛋白之间的物理关联提供了首个证据。印迹覆盖实验还表明,IFAPa - 400能与两种分子量分别为19 kDa和32 kDa的未鉴定多肽结合。因此,这些结果与以下假设一致:需要波形蛋白 - IFAPa - 400组合的结构晶格构成了成肌细胞和神经细胞的中间丝系统。