Understanding the neuronal synapse and challenges associated with the mitochondrial dysfunction in mild cognitive impairment and Alzheimer's disease

被引:14
|
作者
Verma, Harkomal [1 ]
Gangwar, Prabhakar [1 ]
Yadav, Anuradha [1 ]
Yadav, Bharti [1 ]
Rao, Rashmi [1 ]
Kaur, Sharanjot [2 ]
Kumar, Puneet [3 ]
Dhiman, Monisha [2 ]
Taglialatela, Giulio [4 ]
Mantha, Anil Kumar [1 ,5 ]
机构
[1] Cent Univ Punjab, Sch Basic Sci, Dept Zool, Bathinda, Punjab, India
[2] Cent Univ Punjab, Sch Basic Sci, Dept Microbiol, Bathinda, Punjab, India
[3] Cent Univ Punjab, Dept Pharmacol, Bathinda, Punjab, India
[4] Univ Texas Med Branch, Dept Neurol, Galveston, TX USA
[5] Cent Univ Punjab, Sch Basic Sci, Dept Zool, VPO Ghudda, Bathinda 151401, Punjab, India
关键词
Amyloid beta; Hyper-phosphorylated Tau; Alzheimer's disease; DNA base damage; Free radicals; Phytochemicals; Synapse; Mitochondria; PERMEABILITY TRANSITION PORE; CENTRAL-NERVOUS-SYSTEM; ELECTRON-TRANSPORT CHAIN; AMYLOID BETA-PEPTIDE; OXIDATIVE DAMAGE; IN-VITRO; ENDOPLASMIC-RETICULUM; ABNORMAL INTERACTION; SIGNALING PATHWAYS; REPAIR PATHWAY;
D O I
10.1016/j.mito.2023.09.003
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Synaptic mitochondria are crucial for maintaining synaptic activity due to their high energy requirements, substantial calcium (Ca2+) fluctuation, and neurotransmitter release at the synapse. To provide a continuous energy supply, neurons use special mechanisms to transport and distribute healthy mitochondria to the synapse while eliminating the damaged mitochondria from the synapse. Along the neuron, mitochondrial membrane potential (psi) gradient exists and is highest in the somal region. Lower psi in the synaptic region renders mito-chondria more vulnerable to oxidative stress-mediated damage. Secondly, mitochondria become susceptible to the release of cytochrome c, and mitochondrial DNA (mtDNA) is not shielded from the reactive oxygen species (ROS) by the histone proteins (unlike nuclear DNA), leading to activation of caspases and pronounced oxidative DNA base damage, which ultimately causes synaptic loss. Both synaptic mitochondrial dysfunction and synaptic failure are crucial factors responsible for Alzheimer's disease (AD). Furthermore, amyloid beta (A beta) and hyper-phosphorylated Tau, the two leading players of AD, exaggerate the disease-like pathological conditions by reducing the mitochondrial trafficking, blocking the bi-directional transport at the synapse, enhancing the mitochondrial fission via activating the mitochondrial fission proteins, enhancing the swelling of mitochondria by increasing the influx of water through mitochondrial permeability transition pore (mPTP) opening, as well as reduced ATP production by blocking the activity of complex I and complex IV. Mild cognitive impairment (MCI) is also associated with decline in cognitive ability caused by synaptic degradation. This review summarizes the challenges associated with the synaptic mitochondrial dysfunction linked to AD and MCI and the role of phy-tochemicals in restoring the synaptic activity and rendering neuroprotection in AD.
引用
收藏
页码:19 / 29
页数:11
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