Shin R W
Department of Neurological Science, Tohoku University of Medical School, Sendai, Japan.
Gerontology. 1997;43 Suppl 1:16-23. doi: 10.1159/000213882.
Since the first reports of aluminum-induced neurofibrillary degeneration in experimental animals, extensive studies have been performed to clarify the role played by aluminum in the pathogenesis of Alzheimer's disease (AD). Additional evidence implicating aluminum in AD includes elevated levels of aluminum in the AD brain, epidemiologic data linking aluminum exposure to AD, and interactions between aluminum and protein components in the pathologic lesions of AD, i.e., neurofibrillary tangles (NFTs) and senile plaques. As most of this evidence is circumstantial and some of it is not consistent in all reports, the role of aluminum in the pathogenesis of AD has remained controversial. However, the interaction of aluminum with altered forms of tau in the paired helical filaments (PHFs) of neurofibrillary lesions is highly likely to contribute to the formation of NFTs because (1) aluminum and abnormally phosphorylated tau (known as PHF tau) are colocalized in NFTs, and (2) aluminum is known to preferentially interact with such phosphorylated proteins. Recently, it was demonstrated that aluminum binds selectively to PHF tau, induces PHF tau to aggregate, and retards the in vivo proteolysis of PHF tau. These data suggest that aluminum could serve as a cofactor in the formation of NFTs by interacting with PHF tau. This review summarizes the current understanding of how aluminum might contribute to the formation of neurofibrillary lesions from PHF tau in neurons of the AD brain.
自从首次报道实验动物中铝诱导的神经原纤维变性以来,人们已经进行了广泛的研究,以阐明铝在阿尔茨海默病(AD)发病机制中所起的作用。更多将铝与AD联系起来的证据包括AD脑内铝水平升高、将铝暴露与AD联系起来的流行病学数据,以及铝与AD病理病变(即神经原纤维缠结(NFTs)和老年斑)中的蛋白质成分之间的相互作用。由于这些证据大多是间接的,且在所有报告中并不一致,铝在AD发病机制中的作用一直存在争议。然而,铝与神经原纤维病变的双螺旋丝(PHFs)中改变形式的tau相互作用极有可能促成NFTs的形成,因为(1)铝和异常磷酸化的tau(称为PHF tau)共定位于NFTs中,(2)已知铝优先与这种磷酸化蛋白相互作用。最近,有研究表明铝选择性地与PHF tau结合,诱导PHF tau聚集,并延缓PHF tau在体内的蛋白水解。这些数据表明,铝可能通过与PHF tau相互作用,作为NFTs形成的辅助因子。这篇综述总结了目前对于铝如何可能促成AD脑神经元中由PHF tau形成神经原纤维病变的理解。