Aβ Oligomers Cause Localized Ca2+ Elevation, Missorting of Endogenous Tau into Dendrites, Tau Phosphorylation, and Destruction of Microtubules and Spines
TL;DR: The A β-induced effects on microtubule and mitochondria depletion, Tau missorting, and loss of spines are prevented by taxol, indicating that Aβ-induced microtubules destabilization and corresponding traffic defects are key factors in incipient degeneration.
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Abstract: Aggregation of amyloid-β (Aβ) and Tau protein are hallmarks of Alzheimer's disease (AD), and according to the Aβ-cascade hypothesis, Aβ is considered toxic for neurons and Tau a downstream target of Aβ. We have investigated differentiated primary hippocampal neurons for early localized changes following exposure to Aβ oligomers. Initial events become evident by missorting of endogenous Tau into the somatodendritic compartment, in contrast to axonal sorting in normal neurons. In missorted dendritic regions there is a depletion of spines and local increase in Ca2+, and breakdown of microtubules. Tau in these regions shows elevated phosphorylation at certain sites diagnostic of AD-Tau (e.g., epitope of antibody 12E8, whose phosphorylation causes detachment of Tau from microtubules, and AT8 epitope), and local elevation of certain kinase activities (e.g., MARK/par-1, BRSK/SADK, p70S6K, cdk5, but not GSK3β, JNK, MAPK). These local effects occur without global changes in Tau, tubulin, or kinase levels. Somatodendritic missorting occurs not only with Tau, but also with other axonal proteins such as neurofilaments, and correlates with pronounced depletion of microtubules and mitochondria. The Aβ-induced effects on microtubule and mitochondria depletion, Tau missorting, and loss of spines are prevented by taxol, indicating that Aβ-induced microtubule destabilization and corresponding traffic defects are key factors in incipient degeneration. By contrast, the rise in Ca2+ levels, kinase activities, and Tau phosphorylation cannot be prevented by taxol. Incipient and local changes similar to those of Aβ oligomers can be evoked by cell stressors (e.g., H2O2, glutamate, serum deprivation), suggesting some common mechanism of signaling.
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Citations
Laser-Induced Axotomy of Human iPSC-Derived and Murine Primary Neurons Decreases Somatic Tau and AT8 Tau Phosphorylation: A Single-Cell Approach to Study Effects of Acute Axonal Damage.
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References
Soluble protein oligomers in neurodegeneration: lessons from the Alzheimer's amyloid beta-peptide.
Christian Haass,Dennis J. Selkoe +1 more
TL;DR: Findings in other neurodegenerative diseases indicate that a broadly similar process of neuronal dysfunction is induced by diffusible oligomers of misfolded proteins.
4.8K
Common Structure of Soluble Amyloid Oligomers Implies Common Mechanism of Pathogenesis
Rakez Kayed,Elizabeth Head,Jennifer L. Thompson,Theresa M. McIntire,Saskia Milton,Carl W. Cotman,Charles G. Glabe +6 more
TL;DR: It is shown that all of the soluble oligomers tested display a common conformation-dependent structure that is unique to soluble oligomer regardless of sequence, suggesting they share a common mechanism of toxicity.
4.3K
Diffusible, nonfibrillar ligands derived from Aβ1–42 are potent central nervous system neurotoxins
Mary P. Lambert,A. K. Barlow,Brett A. Chromy,C. Edwards,R. Freed,M. Liosatos,Todd E. Morgan,Irina Rozovsky,Barbara L. Trommer,Kirsten L. Viola,Pat Wals,Chuan Zhang,Caleb E. Finch,Grant A. Krafft,William L. Klein +14 more
TL;DR: It is hypothesized that impaired synaptic plasticity and associated memory dysfunction during early stage Alzheimer's disease and severe cellular degeneration and dementia during end stage could be caused by the biphasic impact of Abeta-derived diffusible ligands acting upon particular neural signal transduction pathways.
3.8K
A specific amyloid-|[beta]| protein assembly in the brain impairs memory
Sylvain Lesné,Ming Teng Koh,Linda Kotilinek,Rakez Kayed,Charles G. Glabe,Austin J. Yang,Michela Gallagher,Karen H. Ashe +7 more
TL;DR: It is found that memory deficits in middle-aged Tg2576 mice are caused by the extracellular accumulation of a 56-kDa soluble amyloid-β assembly, which is proposed to be Aβ*56 (Aβ star 56), which may contribute to cognitive deficits associated with Alzheimer's disease.
2.8K
Tau-mediated neurodegeneration in Alzheimer's disease and related disorders.
TL;DR: This Review summarizes the most recent advances in knowledge of the mechanisms of tau-mediated neurodegeneration to forge an integrated concept of those t Tau-linked disease processes that drive the onset and progression of AD and related tauopathies.
2.2K