The amyloid hypothesis of Alzheimer's disease at 25 years

Амилоидная гипотеза болезни Альцгеймера: 25 лет спустя
Dennis J. Selkoe, John Hardy
2016-03-29

Alzheimer's diseaseAβ42 dyshomeostasisamyloid hypothesisamyloid precursor proteinpresenilin γ-secretase
Despite continuing debate about the amyloid β-protein (or Aβ hypothesis, new lines of evidence from laboratories and clinics worldwide support the concept that an imbalance between production and clearance of Aβ42 and related Aβ peptides is a very early, often initiating factor in Alzheimer's disease (AD). Confirmation that presenilin is the catalytic site of γ-secretase has provided a linchpin: all dominant mutations causing early-onset AD occur either in the substrate (amyloid precursor protein, APP) or the protease (presenilin) of the reaction that generates Aβ. Duplication of the wild-type APP gene in Down's syndrome leads to Aβ deposits in the teens, followed by microgliosis, astrocytosis, and neurofibrillary tangles typical of AD Apolipoprotein E4, which predisposes to AD in > 40% of cases, has been found to impair Aβ clearance from the brain. Soluble oligomers of Aβ42 isolated from AD patients' brains can decrease synapse number, inhibit long-term potentiation, and enhance long-term synaptic depression in rodent hippocampus, and injecting them into healthy rats impairs memory. The human oligomers also induce hyperphosphorylation of tau at AD-relevant epitopes and cause neuritic dystrophy in cultured neurons. Crossing human APP with human tau transgenic mice enhances tau-positive neurotoxicity. In humans, new studies show that low cerebrospinal fluid (CSF) Aβ42 and amyloid-PET positivity precede other AD manifestations by many years. Most importantly, recent trials of three different Aβ antibodies (solanezumab, crenezumab, and aducanumab) have suggested a slowing of cognitive decline in post hoc analyses of mild AD subjects. Although many factors contribute to AD pathogenesis, Aβ dyshomeostasis has emerged as the most extensively validated and compelling therapeutic target.
1
APP gene duplication in Down syndrome produces adolescent Aβ deposits followed by gliosis and neurofibrillary tangles characteristic of Alzheimer’s disease.
2
All dominant early-onset Alzheimer’s mutations affect either APP or presenilin, the substrate and catalytic protease generating Aβ.
3
Apolipoprotein E4 increases Alzheimer’s risk in more than 40% of cases and impairs brain clearance of Aβ.
4
Aβ dyshomeostasis is presented as the most extensively validated and compelling therapeutic target despite multifactorial Alzheimer’s pathogenesis.
5
Aβ42 dyshomeostasis caused by imbalance between production and clearance is supported as an early, often initiating factor in Alzheimer’s disease.
6
Low CSF Aβ42 and positive amyloid-PET scans precede other Alzheimer’s manifestations by many years, while antibody trials suggest slowed cognitive decline in mild disease.
7
Patient-derived soluble Aβ42 oligomers reduce synapses, disrupt hippocampal plasticity and memory, promote tau hyperphosphorylation, and cause neuritic dystrophy.

Amyloid β-protein (Aβ), especially Aβ42 and related Aβ peptides in the brain

the role of an imbalance between Aβ42-related peptide production and clearance in initiating AD pathology and driving synaptic, tau-related, neurodegenerative, biomarker, and cognitive changes

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2016-03-29
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Dennis J. Selkoe
John Hardy
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