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最大神经丝亚基蛋白的去磷酸化影响重组神经丝中横桥的结构。

Dephosphorylation of the largest neurofilament subunit protein influences the structure of crossbridges in reassembled neurofilaments.

作者信息

Gotow T, Tanaka T, Nakamura Y, Takeda M

机构信息

Department of Anatomy, Osaka University Medical School, Japan.

出版信息

J Cell Sci. 1994 Jul;107 ( Pt 7):1949-57. doi: 10.1242/jcs.107.7.1949.

Abstract

Phosphorylation-dependent change in electrophoretic mobility is the most unique characteristic of NF-H, the largest molecular mass subunit of the neurofilament. We dephosphorylated NF-H using Escherichia coli alkaline phosphatase, then reassembled it into neurofilaments with NF-M and NF-L, and into NF-H filaments with NF-H alone. We compared these dephosphorylated filaments with control: projections by low-angle rotary-shadow, crossbridges by quick-freeze deep-etch, and core filament packing density by thin-section electron microscopy. Projections in the dephosphorylated filaments were basically similar in structure to those in control, although there was a tendency for them to be wider and less dense, especially in NF-H filaments. Dephosphorylated filaments were still able to form crossbridges between core filaments, but their crossbridges were significantly wider, less dense, more branched and more irregular than crossbridges in control, and core filaments were more densely packed. These structural differences may be brought about by the removal of phosphate groups from NF-H tail and consequent reduction of electrostatic repulsion between adjacent crossbridges extending from the same core filament. The results indicate that phosphorylation of NF-H is necessary for forming well developed crossbridges, straight and at constant intervals, like those of in vivo axonal neurofilaments.

摘要

磷酸化依赖性的电泳迁移率变化是神经丝最大分子量亚基NF-H最独特的特征。我们用大肠杆菌碱性磷酸酶使NF-H去磷酸化,然后将其与NF-M和NF-L重新组装成神经丝,以及单独与NF-H组装成NF-H丝。我们通过低角度旋转阴影观察突起、快速冷冻深度蚀刻观察交叉桥以及通过超薄切片电子显微镜观察核心丝堆积密度,将这些去磷酸化的丝与对照进行比较。去磷酸化丝中的突起在结构上与对照中的基本相似,尽管它们有更宽且密度更低的趋势,尤其是在NF-H丝中。去磷酸化的丝仍然能够在核心丝之间形成交叉桥,但其交叉桥比对照中的明显更宽、密度更低、分支更多且更不规则,并且核心丝堆积更密集。这些结构差异可能是由于从NF-H尾部去除磷酸基团以及随之而来的从同一核心丝延伸的相邻交叉桥之间静电排斥的减少所致。结果表明,NF-H的磷酸化对于形成像体内轴突神经丝那样发育良好、笔直且间隔恒定的交叉桥是必要的。

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