Involvement of heat shock proteins HSP70 in the mechanisms of endogenous neuroprotection: the prospect of using HSP70 modulators
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Abstract
This analytical review summarizes literature data and our own research on
HSP70-dependent mechanisms of neuroprotection and discusses potential
pharmacological agents that can influence HSP70 expression to improve
neurological outcomes and effective therapy. The authors formed a systemic
concepts of the role of HSP70-dependent mechanisms of endogenous
neuroprotection aimed at stopping the formation of mitochondrial dysfunction,
activation of apoptosis, desensitization of estrogen receptors, reduction of
oxidative and nitrosative stress, prevention of morpho-functional changes in brain
cells during cerebral ischemia, and experimentally substantiated new target links
for neuroprotection. Heat shock proteins (HSPs) are an evolutionarily integral
part of the functioning of all cells acting as intracellular chaperones that support
cell proteostasis under normal and various stress conditions (hyperthermia,
hypoxia, oxidative stress, radiation, etc.). The greatest curiosity in conditions
of ischemic brain damage is the HSP70 protein, as an important component
of the endogenous neuroprotection system, which, first of all, performs the
function of intracellular chaperones and ensures the processes of folding, holding
and transport of synthesized proteins, as well as their degradation, both under
normoxic conditions and stress-induced denaturation. A direct neuroprotective
effect of HSP70 has been established, which is realized through the regulation
the processes of apoptosis and cell necrosis due to a long-term effect on the
synthesis of antioxidant enzymes, chaperone activity, and stabilization of active
enzymes. An increase in the level of HSP70 leads to the normalization of the
glutathione link of the thiol-disulfide system and an increase in the resistance
of cells to ischemia. HSP 70 is able to activate and regulate compensatory
ATP synthesis pathways during ischemia. It was found that in response to the
cerebral ischemia formation, HIF-1a is expressed, which initiates the launch of
compensatory mechanisms for energy production.
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Involvement of heat shock proteins HSP70 in the mechanisms of endogenous neuroprotection: the prospect of using HSP70 modulators / I. F. Belenichev, O. G. Aliyeva, O. O. Popazova, N. V. Bukhtiyarova // Frontiers in Cellular Neuroscience. - 2023. - Vol. 17. - P. 1-16. - https://doi.org/10.3389/fncel.2023.1131683.