Protein Homeostasis Networks and the Use of Yeast to Guide Interventions in Alzheimer's Disease
Overview
Chemistry
Molecular Biology
Authors
Affiliations
Alzheimer's Disease (AD) is a progressive multifactorial age-related neurodegenerative disorder that causes the majority of deaths due to dementia in the elderly. Although various risk factors have been found to be associated with AD progression, the cause of the disease is still unresolved. The loss of proteostasis is one of the major causes of AD: it is evident by aggregation of misfolded proteins, lipid homeostasis disruption, accumulation of autophagic vesicles, and oxidative damage during the disease progression. Different models have been developed to study AD, one of which is a yeast model. Yeasts are simple unicellular eukaryotic cells that have provided great insights into human cell biology. Various yeast models, including unmodified and genetically modified yeasts, have been established for studying AD and have provided significant amount of information on AD pathology and potential interventions. The conservation of various human biological processes, including signal transduction, energy metabolism, protein homeostasis, stress responses, oxidative phosphorylation, vesicle trafficking, apoptosis, endocytosis, and ageing, renders yeast a fascinating, powerful model for AD. In addition, the easy manipulation of the yeast genome and availability of methods to evaluate yeast cells rapidly in high throughput technological platforms strengthen the rationale of using yeast as a model. This review focuses on the description of the proteostasis network in yeast and its comparison with the human proteostasis network. It further elaborates on the AD-associated proteostasis failure and applications of the yeast proteostasis network to understand AD pathology and its potential to guide interventions against AD.
Simvastatin, Its Antimicrobial Activity and Its Prevention of Alzheimer's Disease.
Dhakal S, Macreadie I Microorganisms. 2024; 12(6).
PMID: 38930515 PMC: 11205914. DOI: 10.3390/microorganisms12061133.
as a Model for Studying Human Neurodegenerative Disorders: Viral Capsid Protein Expression.
Bayandina S, Mukha D Int J Mol Sci. 2023; 24(24).
PMID: 38139041 PMC: 10743263. DOI: 10.3390/ijms242417213.
Alzheimer's Disease: Significant Benefit from the Yeast-Based Models.
Epremyan K, Mamaev D, Zvyagilskaya R Int J Mol Sci. 2023; 24(12).
PMID: 37372938 PMC: 10298092. DOI: 10.3390/ijms24129791.
Altered Mitochondrial Morphology and Bioenergetics in a New Yeast Model Expressing Aβ42.
Epremyan K, Rogov A, Goleva T, Lavrushkina S, Zinovkin R, Zvyagilskaya R Int J Mol Sci. 2023; 24(2).
PMID: 36674415 PMC: 9862424. DOI: 10.3390/ijms24020900.
Implications of Microorganisms in Alzheimer's Disease.
Yadav P, Lee Y, Panday H, Kant S, Bajwa N, Parashar R Curr Issues Mol Biol. 2022; 44(10):4584-4615.
PMID: 36286029 PMC: 9600878. DOI: 10.3390/cimb44100314.