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铝与神经丝亚基的多重相互作用:高分子量和中分子量亚基C末端延伸之间的磷酸依赖性相互作用的调节。

Multiple interactions of aluminum with neurofilament subunits: regulation by phosphate-dependent interactions between C-terminal extensions of the high and middle molecular weight subunits.

作者信息

Shea T B, Beermann M L

机构信息

Laboratory for Molecular Neuroscience, McLean Hospital, Belmont, Massachusetts 02178.

出版信息

J Neurosci Res. 1994 Jun 1;38(2):160-6. doi: 10.1002/jnr.490380206.

DOI:10.1002/jnr.490380206
PMID:8078101
Abstract

Exposure of individual purified neurofilament (NF) proteins to AlCl3 alters their electrophoretic properties in a time- and concentration-dependent manner, as visualized by their failure to migrate into SDS gels. Co-incubation of purified high (NF-H) and middle (NF-M) but not low (NF-L) molecular weight NF subunits prevents this AlCl3-induced alteration in electrophoretic migration. This latter finding suggested that specific interactions between NF-H and NF-M other than filament formation influenced their interaction with AlCl3. Co-incubation of the 160 kDa alpha-chymotryptic cleavage product of NF-H (corresponding to the highly phosphorylated C-terminal sidearm domain) with native NF-M prevented alteration in subunit electrophoretic migration by AlCl3. By contrast, intact, dephosphorylated NF-H subunits were unable to prevent AlCl3-induced alteration of native NF-M electrophoretic migration. Taken together, these findings suggest that phosphate-dependent interactions between the sidearm extensions of NF-H and NF-M diminish the ability of AlCl3 to associate with either subunit in a manner that alters their electrophoretic migration. This interaction of NF-H and NF-M sidearms is SDS-sensitive, while AlCl3-induced alteration in electrophoretic migration of individual subunits is SDS-resistant. Addition of SDS to mixtures of NF-H and NF-M subunits disrupted the protective effect, and promoted AlCl3-induced alterations in subunit electrophoretic migration. These findings support and extend the current hypothesis that the ability of aluminum to interact with NF subunits is a function of subunit phosphorylation, assembly, and extent of neurofilament-neurofilament cross-linking.

摘要

将单个纯化的神经丝(NF)蛋白暴露于氯化铝中,会以时间和浓度依赖性方式改变其电泳特性,这可通过它们无法迁移到SDS凝胶中来观察到。纯化的高分子量(NF-H)和中分子量(NF-M)而非低分子量(NF-L)的NF亚基共同孵育可防止这种由氯化铝诱导的电泳迁移改变。后一发现表明,除了丝形成之外,NF-H和NF-M之间的特定相互作用影响了它们与氯化铝的相互作用。将NF-H的160 kDaα-胰凝乳蛋白酶裂解产物(对应于高度磷酸化的C末端侧臂结构域)与天然NF-M共同孵育可防止氯化铝引起的亚基电泳迁移改变。相比之下,完整的、去磷酸化的NF-H亚基无法防止氯化铝诱导的天然NF-M电泳迁移改变。综上所述,这些发现表明,NF-H和NF-M侧臂延伸之间的磷酸依赖性相互作用降低了氯化铝以改变其电泳迁移的方式与任一亚基结合的能力。NF-H和NF-M侧臂的这种相互作用对SDS敏感,而氯化铝诱导的单个亚基电泳迁移改变对SDS具有抗性。向NF-H和NF-M亚基混合物中添加SDS会破坏保护作用,并促进氯化铝诱导的亚基电泳迁移改变。这些发现支持并扩展了当前的假说,即铝与NF亚基相互作用的能力是亚基磷酸化、组装以及神经丝-神经丝交联程度的函数。

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