2020
DOI: 10.1134/s2079057020010099
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Expression of HSP70 Heat-Shock Proteins under Oxidative Stress

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Cited by 36 publications
(24 citation statements)
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“…Eukaryotic and prokaryotic cells can produce heat shock proteins (HSPs) in response to different insults [71]. These proteins were discovered in 1962 by Ritossa [75], and may be present both inside the cell and on the cell membrane [76]. In general, HSPs exhibit different behaviors in different situations, and so some of these proteins can be produced constructively and effectively under natural conditions.…”
Section: Redox-sensitive Heat Shock Proteins (Hsps) Signaling Pathwaymentioning
confidence: 99%
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“…Eukaryotic and prokaryotic cells can produce heat shock proteins (HSPs) in response to different insults [71]. These proteins were discovered in 1962 by Ritossa [75], and may be present both inside the cell and on the cell membrane [76]. In general, HSPs exhibit different behaviors in different situations, and so some of these proteins can be produced constructively and effectively under natural conditions.…”
Section: Redox-sensitive Heat Shock Proteins (Hsps) Signaling Pathwaymentioning
confidence: 99%
“…However, when these proteins are overproduced under stressful conditions such as ischemia, exercise, oxidative stress, heat, hypoxia, high temperature, inflammation, free radicals and ROS, and acute or chronic diseases, they lead to denaturation of proteins. On the one hand, immune reactions and tumor formation play an important role in the development of OS associated with aging [75][76][77]. On the other hand, in such stressful situations, HSPs may protect the body's cells through various processes such as the initiation of protein folding, repair, refolding of misfolded peptides, and possible degradation of irreparable proteins.…”
Section: Redox-sensitive Heat Shock Proteins (Hsps) Signaling Pathwaymentioning
confidence: 99%
See 1 more Smart Citation
“…При воздействии «стрессорного» фактора внутриклеточное содержание HSP70 (белок теплового шока с молекулярной массой 70 кДа) может увеличиваться в десятки раз и составлять до 5% от содержания всех клеточных белков [3]. Имеются данные о том, что к экспрессии HSP70 способен широкий спектр клеток, в том числе гепатоциты, лимфоциты и макрофаги [4]. Внутриклеточный HSP70 не только опосредует шаперон-цитопротекторные функции, но также может блокировать избыточный апоптоз [5].…”
Section: ââåäåíèåunclassified
“…(2,4) Another factor affecting the decrease in male fertility is the hyperproduction of ROS. (11)(12)(13) ROS damage the sperm membrane, which leads to a decrease in sperm quality. (10,12) At the stationary level, lipid peroxidation processes are maintained due to the work of the AOS, which includes enzymatic and non-enzymatic links.…”
Section: Introductionmentioning
confidence: 99%