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海马神经原纤维缠结中tau蛋白和神经丝表位的相对丰度

Relative abundance of tau and neurofilament epitopes in hippocampal neurofibrillary tangles.

作者信息

Schmidt M L, Lee V M, Trojanowski J Q

机构信息

Department of Pathology and Laboratory Medicine (Neuropathology), University of Pennsylvania School of Medicine, Philadelphia 19104-4283.

出版信息

Am J Pathol. 1990 May;136(5):1069-75.

Abstract

Neurofibrillary tangles (NFTs) derive, in part, from normal neuronal cytoskeletal proteins, ie, large portions of tau (tau) but only restricted segments of the peripheral domains of the high- and middle-molecular weight neurofilament subunits. To learn more about the events leading to the incorporation of tau and neurofilament epitopes into NFTs, the relative abundance of tau and NF determinants in these lesions was quantitatively analyzed in hippocampi from Alzheimer disease (AD) patients and age-matched controls using monoclonal antibodies specific for tau or for NF proteins. Immunostained NFTs appeared qualitatively the same in both AD and controls, ie, every epitope found in AD NFTs occurred also in the NFTs of the control patients. However, in hippocampi with only a few tangles, tau epitopes, but no NF epitopes, were detected in NFTs. In contrast, both tau and NF epitopes were present in those tangles that were found in hippocampi with abundant NFTs. Nevertheless, the number of tau-positive NFTs generally exceeded the number of NF-positive NFTs. These findings indicate that tau epitopes are more abundant than NF epitopes in NFTs and that the formation of NFTs may be linked to a derangement in the normal metabolism of tau that is more extensive than alterations in NF protein metabolism.

摘要

神经原纤维缠结(NFTs)部分源自正常神经元细胞骨架蛋白,即大部分tau蛋白(tau),但仅来自高分子量和中分子量神经丝亚基外周结构域的有限片段。为了更多地了解导致tau和神经丝表位纳入NFTs的事件,我们使用针对tau或神经丝蛋白的单克隆抗体,对阿尔茨海默病(AD)患者和年龄匹配对照者海马体中这些病变中tau和神经丝决定簇的相对丰度进行了定量分析。免疫染色的NFTs在AD患者和对照者中定性上是相同的,即AD NFTs中发现的每个表位在对照患者的NFTs中也存在。然而,在仅有少量缠结的海马体中,NFTs中检测到tau表位,但未检测到神经丝表位。相反,在有大量NFTs的海马体中发现的那些缠结中,tau和神经丝表位均存在。尽管如此,tau阳性NFTs的数量通常超过神经丝阳性NFTs的数量。这些发现表明,NFTs中tau表位比神经丝表位更丰富,并且NFTs的形成可能与tau正常代谢紊乱有关,这种紊乱比神经丝蛋白代谢改变更为广泛。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c512/1877428/3586a1d80680/amjpathol00113-0089-a.jpg

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