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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Assembly properties of neurofilament light chain Ser55 mutants in transfected mammalian cells.
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Assembly properties of neurofilament light chain Ser55 mutants in transfected mammalian cells.

机译:神经丝轻链Ser55突变体在转染的哺乳动物细胞中的装配特性。

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Ser55 within the head domain of neurofilament light chain (NF-L) is transiently phosphorylated by protein kinase A, and phosphorylation of this residue is thought to regulate assembly of neurofilaments. To understand how Ser55 phosphorylation influences NF-L assembly, wild-type and mutant NF-L genes in which Ser55 was mutated to alanine, so as to prevent phosphorylation, or to aspartate, so as to mimic permanent phosphorylation, were transfected into mammalian cells that contain or do not contain an endogenous intermediate filament network. Wild-type and mutant NF-Ls localised to the Triton X-100-insoluble fraction, which suggests that phosphorylation of Ser55 does not inhibit assembly of NF-L and NF-L/ vimentin polymers at or below the tetrameric stage. Immunofluorescence microscopy of transfected cells demonstrated that the wild-type and mutant NF-Ls all colocalised with vimentin to produce similar filamentous arrays. However, in cells lacking an endogenous intermediate filament network, the aspartate mutant produced a pattern of staining different from that of the wild-type or alanine mutant. These results suggest that phosphorylation of NF-L Ser55 is not a mechanism that precludes assembly of neurofilaments from monomers into intermediate filament structures but that phosphorylation/dephosphorylation of this residue might confer more subtle characteristics on neurofilament assembly properties and architecture.
机译:神经丝轻链(NF-L)头部结构域中的Ser55被蛋白激酶A瞬时磷酸化,该残基的磷酸化被认为可调节神经丝的装配。为了了解Ser55磷酸化如何影响NF-L装配,将野生型和突变型NF-L基因(其中Ser55突变为丙氨酸,以防止磷酸化或天冬氨酸化,从而模拟永久性磷酸化)被转染哺乳动物细胞包含或不包含内源中间丝网络。野生型和突变NF-Ls定位于Triton X-100不溶级分,这表明Ser55的磷酸化不会抑制NF-L和NF-L /波形蛋白聚合物在四聚体阶段或以下的组装。转染细胞的免疫荧光显微镜检查表明,野生型和突变型NF-L均与波形蛋白共定位,以产生相似的丝状阵列。但是,在缺乏内源性中间丝网络的细胞中,天冬氨酸突变体产生的染色模式与野生型或丙氨酸突变体不同。这些结果表明,NF-L Ser55的磷酸化不是阻止神经丝从单体组装成中间丝结构的机制,但是该残基的磷酸化/去磷酸化可能赋予神经丝组装特性和结构更多的细微特征。

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