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PHF-Core Tau as the Potential Initiating Event for Tau Pathology in Alzheimer's Disease. | LitMetric

AI Article Synopsis

  • About 50 million people suffer from dementia globally, with Alzheimer's disease being the most prevalent type, leading to significant disability among the elderly.
  • Alzheimer's is marked by memory loss and cognitive decline, with key brain lesions included neuritic plaques and neurofibrillary tangles caused by tau protein abnormalities.
  • The review discusses how tau undergoes pathological changes—like hyperphosphorylation and truncation—contributing to the progression from pre-NFTs to NFTs, highlighting the role of the PHF core in forming these tangles and tau phosphorylation's potential protective effects.

Article Abstract

Worldwide, around 50 million people have dementia. Alzheimer's disease (AD) is the most common type of dementia and one of the major causes of disability and dependency among the elderly worldwide. Clinically, AD is characterized by impaired memory accompanied by other deficiencies in the cognitive domain. Neuritic plaques (NPs) and neurofibrillary tangles (NFTs) are histopathological lesions that define brains with AD. NFTs consist of abundant intracellular paired helical filaments (PHFs) whose main constituent is tau protein. Tau undergoes posttranslational changes including hyperphosphorylation and truncation, both of which favor conformational changes in the protein. The sequential pathological processing of tau is illustrated with the following specific markers: pT231, TG3, AT8, AT100, and Alz50. Two proteolysis sites for tau have been described-truncation at glutamate 391 and at aspartate 421-and which can be demonstrated by reactivity with the antibodies 423 and TauC-3, respectively. In this review, we describe the molecular changes in tau protein as pre-NFTs progress to extracellular NFTs and during which the formation of a minimal nucleus of the filament, as the PHF core, occurs. We also analyzed the PHF core as the initiator of PHFs and tau phosphorylation as a protective neuronal mechanism against the assembly of the PHF core.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7511711PMC
http://dx.doi.org/10.3389/fncel.2020.00247DOI Listing

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