Early Mitochondrial Fragmentation and Dysfunction in a Drosophila Model for Alzheimer's Disease

被引:17
|
作者
Wang, Xingjun [1 ]
Davis, Ronald L. [1 ]
机构
[1] Scripps Res Inst Florida, Dept Neurosci, Jupiter, FL 33458 USA
关键词
Mitochondrial fragmentation; Alzheimer's disease; A beta toxicity; Learning; AMYLOID-BETA; CELL-DEATH; A-BETA; TAU; NEURODEGENERATION; TOXICITY; PHENOTYPES; APOPTOSIS; MEMORY; DCP-1;
D O I
10.1007/s12035-020-02107-w
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Many different cellular systems and molecular processes become compromised in Alzheimer's disease (AD) including proteostasis, autophagy, inflammatory responses, synapse and neuronal circuitry, and mitochondrial function. We focused in this study on mitochondrial dysfunction owing to the toxic neuronal environment produced by expression of A beta 42, and its relationship to other pathologies found in AD including increased neuronal apoptosis, plaque deposition, and memory impairment. Using super-resolution microscopy, we have assayed mitochondrial status in the three distinct neuronal compartments (somatic, dendritic, axonal) of mushroom body neurons ofDrosophilaexpressing A beta 42. The mushroom body neurons comprise a major center for olfactory memory formation in insects. We employed calcium imaging to measure mitochondrial function, immunohistochemical and staining techniques to measure apoptosis and plaque formation, and olfactory classical conditioning to measure learning. We found that mitochondria become fragmented at a very early age along with decreased function measured by mitochondrial calcium entry. Increased apoptosis and plaque deposition also occur early, yet interestingly, a learning impairment was found only after a much longer period of time-10 days, which is a large fraction of the fly's lifespan. This is similar to the pronounced delay between cellular pathologies and the emergence of a memory dysfunction in humans. Our studies are consistent with the model that mitochondrial dysfunction and/or other cellular pathologies emerge at an early age and lead to much later learning impairments. The results obtained further develop thisDrosophilamodel as a usefulin vivosystem for probing the mechanisms by which A beta 42 produces mitochondrial and other cellular toxicities that produce memory dysfunction.
引用
收藏
页码:143 / 155
页数:13
相关论文
共 50 条
  • [11] Inhibition of mitochondrial fragmentation protects against Alzheimer's disease in rodent model
    Wang, Wenzhang
    Yin, Jun
    Ma, Xiaopin
    Zhao, Fanpeng
    Siedlak, Sandra L.
    Wang, Zhenlian
    Torres, Sandy
    Fujioka, Hisashi
    Xu, Ying
    Perry, George
    Zhu, Xiongwei
    HUMAN MOLECULAR GENETICS, 2017, 26 (21) : 4118 - 4131
  • [12] Mechanisms of Mitochondrial Dysfunction in Alzheimer's Disease
    Cadonic, Chris
    Sabbir, Mohammad Golam
    Albensi, Benedict C.
    MOLECULAR NEUROBIOLOGY, 2016, 53 (09) : 6078 - 6090
  • [13] Metabolomics and mitochondrial dysfunction in Alzheimer's disease
    Kim, Dong Hee
    Gim, Jeong-An
    Yoon, Dahye
    Kim, Suhkmann
    Kim, Heui-Soo
    GENES & GENOMICS, 2017, 39 (03) : 295 - 300
  • [14] Mitochondrial aging and dysfunction in Alzheimer's disease
    Sullivan, PG
    Brown, MR
    PROGRESS IN NEURO-PSYCHOPHARMACOLOGY & BIOLOGICAL PSYCHIATRY, 2005, 29 (03): : 407 - 410
  • [15] Mitochondrial dysfunction in models of Alzheimer's disease
    Eckert, A.
    NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY, 2012, 385 : 23 - 23
  • [16] Metabolomics and mitochondrial dysfunction in Alzheimer’s disease
    Dong Hee Kim
    Jeong-An Gim
    Dahye Yoon
    Suhkmann Kim
    Heui-Soo Kim
    Genes & Genomics, 2017, 39 : 295 - 300
  • [17] Role of mitochondrial dysfunction in Alzheimer's disease
    Castellani, R
    Hirai, K
    Aliev, G
    Drew, KL
    Nunomura, A
    Takeda, A
    Cash, AD
    Obrenovich, ME
    Perry, G
    Smith, MA
    JOURNAL OF NEUROSCIENCE RESEARCH, 2002, 70 (03) : 357 - 360
  • [18] Mechanisms of Mitochondrial Dysfunction in Alzheimer’s Disease
    Chris Cadonic
    Mohammad Golam Sabbir
    Benedict C. Albensi
    Molecular Neurobiology, 2016, 53 : 6078 - 6090
  • [19] Mitochondrial Dysfunction and Immune Activation are Detectable in Early Alzheimer's Disease Blood
    Lunnon, Katie
    Ibrahim, Zina
    Proitsi, Petroula
    Lourdusamy, Anbarasu
    Newhouse, Stephen
    Sattlecker, Martina
    Furney, Simon
    Saleem, Muzamil
    Soininen, Hilkka
    Kloszewska, Iwona
    Mecocci, Patrizia
    Tsolaki, Magda
    Vellas, Bruno
    Coppola, Giovanni
    Geschwind, Daniel
    Simmons, Andrew
    Lovestone, Simon
    Dobson, Richard
    Hodges, Angela
    JOURNAL OF ALZHEIMERS DISEASE, 2012, 30 (03) : 685 - 710
  • [20] Mitochondrial dysfunction manifests in the early stages of Alzheimer disease
    Heather Wood
    Nature Reviews Neurology, 2020, 16 (5) : 242 - 242