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去磷酸化诱导神经丝与微管的相互作用。

Dephosphorylation-induced interactions of neurofilaments with microtubules.

作者信息

Hisanaga S, Hirokawa N

机构信息

Department of Anatomy and Cell Biology, Faculty of Medicine, University of Tokyo, Japan.

出版信息

J Biol Chem. 1990 Dec 15;265(35):21852-8.

PMID:2254337
Abstract

Effects of dephosphorylation on interactions of neurofilaments (NFs) with microtubules (MTs) were studied by the cosedimentation method. Centrifugation conditions were chosen so that MTs pelleted but NFs did not. While NFs isolated from bovine spinal cords did not cosediment with MTs polymerized in the presence of taxol, NFs dephosphorylated with Escherichia coli alkaline phosphatase began to coprecipitate with MTs. The dephosphorylated NFs bound to MTs but not to the unpolymerized tubulin dimer. The binding was not observed in the presence of high salt or with MTs containing microtubule-associated proteins. The cosedimentation experiments using purified NF subunit proteins showed that the dephosphorylation-induced binding of NFs to MTs was mediated by the largest subunit of NF (NF-H). Negative staining electron microscopy confirmed bindings of the dephosphorylated NFs and NF-H to MTs. Densitometric measurement of the bound and unbound NF-H after sodium dodecyl sulfate-polyacrylamide gel electrophoresis showed that the binding of the dephosphorylated NF-H to MT was saturable and gave the following binding parameters. Approximately 1 mol of NF-H bound per 10 mol of tubulin dimer with a high affinity site (Kd = 3.8 x 10(-8) M) and per 16 mol of tubulin dimer with a low affinity site (Kd = 1.1 x 10(-7) M).

摘要

采用共沉降法研究了去磷酸化对神经丝(NFs)与微管(MTs)相互作用的影响。选择离心条件,使MTs沉淀而NFs不沉淀。虽然从牛脊髓中分离出的NFs不会与在紫杉醇存在下聚合的MTs共沉降,但用大肠杆菌碱性磷酸酶去磷酸化的NFs开始与MTs共沉淀。去磷酸化的NFs与MTs结合,但不与未聚合的微管蛋白二聚体结合。在高盐存在下或与含有微管相关蛋白的MTs一起时未观察到这种结合。使用纯化的NF亚基蛋白进行的共沉降实验表明,去磷酸化诱导的NFs与MTs的结合是由NF的最大亚基(NF-H)介导的。负染色电子显微镜证实了去磷酸化的NFs和NF-H与MTs的结合。十二烷基硫酸钠-聚丙烯酰胺凝胶电泳后对结合和未结合的NF-H进行光密度测量表明,去磷酸化的NF-H与MT的结合是可饱和的,并给出了以下结合参数。每10摩尔微管蛋白二聚体约有1摩尔NF-H以高亲和力位点(Kd = 3.8 x 10(-8) M)结合,每16摩尔微管蛋白二聚体以低亲和力位点(Kd = 1.1 x 10(-7) M)结合。

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