Heat Shock Protein 70 Protects the Heart from Ischemia/Reperfusion Injury through Inhibition of p38 MAPK Signaling. 2020

Nan Song, and Jiao Ma, and Xiao-Wen Meng, and Hong Liu, and Hui Wang, and Shao-Yong Song, and Qing-Cai Chen, and Hua-Yue Liu, and Juan Zhang, and Ke Peng, and Fu-Hai Ji
Department of Anesthesiology, First Affiliated Hospital of Soochow University, Suzhou, Jiangsu, China.

BACKGROUND Heat shock protein 70 (Hsp70) has been shown to exert cardioprotection. Intracellular calcium ([Ca2+]i) overload induced by p38 mitogen-activated protein kinase (p38 MAPK) activation contributes to cardiac ischemia/reperfusion (I/R) injury. However, whether Hsp70 interacts with p38 MAPK signaling is unclear. Therefore, this study investigated the regulation of p38 MAPK by Hsp70 in I/R-induced cardiac injury. METHODS Neonatal rat cardiomyocytes were subjected to oxygen-glucose deprivation for 6 h followed by 2 h reoxygenation (OGD/R), and rats underwent left anterior artery ligation for 30 min followed by 30 min of reperfusion. The p38 MAPK inhibitor (SB203580), Hsp70 inhibitor (Quercetin), and Hsp70 short hairpin RNA (shRNA) were used prior to OGD/R or I/R. Cell viability, lactate dehydrogenase (LDH) release, serum cardiac troponin I (cTnI), [Ca2+]i levels, cell apoptosis, myocardial infarct size, mRNA level of IL-1β and IL-6, and protein expression of Hsp70, phosphorylated p38 MAPK (p-p38 MAPK), sarcoplasmic/endoplasmic reticulum Ca2+-ATPase2 (SERCA2), phosphorylated signal transducer and activator of transcription3 (p-STAT3), and cleaved caspase3 were assessed. RESULTS Pretreatment with a p38 MAPK inhibitor, SB203580, significantly attenuated OGD/R-induced cell injury or I/R-induced myocardial injury, as evidenced by improved cell viability and lower LDH release, resulted in lower serum cTnI and myocardial infarct size, alleviation of [Ca2+]i overload and cell apoptosis, inhibition of IL-1β and IL-6, and modulation of protein expressions of p-p38 MAPK, SERCA2, p-STAT3, and cleaved-caspase3. Knockdown of Hsp70 by shRNA exacerbated OGD/R-induced cell injury, which was effectively abolished by SB203580. Moreover, inhibition of Hsp70 by quercetin enhanced I/R-induced myocardial injury, while SB203580 pretreatment reversed the harmful effects caused by quercetin. CONCLUSIONS Inhibition of Hsp70 aggravates [Ca2+]i overload, inflammation, and apoptosis through regulating p38 MAPK signaling during cardiac I/R injury, which may help provide novel insight into cardioprotective strategies.

UI MeSH Term Description Entries
D008297 Male Males
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D015398 Signal Transduction The intracellular transfer of information (biological activation/inhibition) through a signal pathway. In each signal transduction system, an activation/inhibition signal from a biologically active molecule (hormone, neurotransmitter) is mediated via the coupling of a receptor/enzyme to a second messenger system or to an ion channel. Signal transduction plays an important role in activating cellular functions, cell differentiation, and cell proliferation. Examples of signal transduction systems are the GAMMA-AMINOBUTYRIC ACID-postsynaptic receptor-calcium ion channel system, the receptor-mediated T-cell activation pathway, and the receptor-mediated activation of phospholipases. Those coupled to membrane depolarization or intracellular release of calcium include the receptor-mediated activation of cytotoxic functions in granulocytes and the synaptic potentiation of protein kinase activation. Some signal transduction pathways may be part of larger signal transduction pathways; for example, protein kinase activation is part of the platelet activation signal pathway. Cell Signaling,Receptor-Mediated Signal Transduction,Signal Pathways,Receptor Mediated Signal Transduction,Signal Transduction Pathways,Signal Transduction Systems,Pathway, Signal,Pathway, Signal Transduction,Pathways, Signal,Pathways, Signal Transduction,Receptor-Mediated Signal Transductions,Signal Pathway,Signal Transduction Pathway,Signal Transduction System,Signal Transduction, Receptor-Mediated,Signal Transductions,Signal Transductions, Receptor-Mediated,System, Signal Transduction,Systems, Signal Transduction,Transduction, Signal,Transductions, Signal
D015428 Myocardial Reperfusion Injury Damage to the MYOCARDIUM resulting from MYOCARDIAL REPERFUSION (restoration of blood flow to ischemic areas of the HEART.) Reperfusion takes place when there is spontaneous thrombolysis, THROMBOLYTIC THERAPY, collateral flow from other coronary vascular beds, or reversal of vasospasm. Reperfusion Injury, Myocardial,Injury, Myocardial Reperfusion,Myocardial Ischemic Reperfusion Injury,Injuries, Myocardial Reperfusion,Myocardial Reperfusion Injuries,Reperfusion Injuries, Myocardial
D017207 Rats, Sprague-Dawley A strain of albino rat used widely for experimental purposes because of its calmness and ease of handling. It was developed by the Sprague-Dawley Animal Company. Holtzman Rat,Rats, Holtzman,Sprague-Dawley Rat,Rats, Sprague Dawley,Holtzman Rats,Rat, Holtzman,Rat, Sprague-Dawley,Sprague Dawley Rat,Sprague Dawley Rats,Sprague-Dawley Rats
D048051 p38 Mitogen-Activated Protein Kinases A mitogen-activated protein kinase subfamily that regulates a variety of cellular processes including CELL GROWTH PROCESSES; CELL DIFFERENTIATION; APOPTOSIS; and cellular responses to INFLAMMATION. The P38 MAP kinases are regulated by CYTOKINE RECEPTORS and can be activated in response to bacterial pathogens. Mitogen-Activated Protein Kinase p38,p38 Mitogen-Activated Protein Kinase,p38 MAP Kinase,p38 MAPK,p38 Protein Kinase,p38 SAPK,MAP Kinase, p38,MAPK, p38,Mitogen Activated Protein Kinase p38,Protein Kinase, p38,p38 Mitogen Activated Protein Kinase,p38 Mitogen Activated Protein Kinases
D051381 Rats The common name for the genus Rattus. Rattus,Rats, Laboratory,Rats, Norway,Rattus norvegicus,Laboratory Rat,Laboratory Rats,Norway Rat,Norway Rats,Rat,Rat, Laboratory,Rat, Norway,norvegicus, Rattus
D018840 HSP70 Heat-Shock Proteins A class of MOLECULAR CHAPERONES found in both prokaryotes and in several compartments of eukaryotic cells. These proteins can interact with polypeptides during a variety of assembly processes in such a way as to prevent the formation of nonfunctional structures. Heat-Shock Proteins 70,Heat Shock 70 kDa Protein,Heat-Shock Protein 70,HSP70 Heat Shock Proteins,Heat Shock Protein 70,Heat Shock Proteins 70,Heat-Shock Proteins, HSP70

Related Publications

Nan Song, and Jiao Ma, and Xiao-Wen Meng, and Hong Liu, and Hui Wang, and Shao-Yong Song, and Qing-Cai Chen, and Hua-Yue Liu, and Juan Zhang, and Ke Peng, and Fu-Hai Ji
May 1999, The Annals of thoracic surgery,
Nan Song, and Jiao Ma, and Xiao-Wen Meng, and Hong Liu, and Hui Wang, and Shao-Yong Song, and Qing-Cai Chen, and Hua-Yue Liu, and Juan Zhang, and Ke Peng, and Fu-Hai Ji
January 2015, Pharmaceutical biology,
Nan Song, and Jiao Ma, and Xiao-Wen Meng, and Hong Liu, and Hui Wang, and Shao-Yong Song, and Qing-Cai Chen, and Hua-Yue Liu, and Juan Zhang, and Ke Peng, and Fu-Hai Ji
May 2006, American journal of physiology. Heart and circulatory physiology,
Nan Song, and Jiao Ma, and Xiao-Wen Meng, and Hong Liu, and Hui Wang, and Shao-Yong Song, and Qing-Cai Chen, and Hua-Yue Liu, and Juan Zhang, and Ke Peng, and Fu-Hai Ji
November 2004, The Journal of surgical research,
Nan Song, and Jiao Ma, and Xiao-Wen Meng, and Hong Liu, and Hui Wang, and Shao-Yong Song, and Qing-Cai Chen, and Hua-Yue Liu, and Juan Zhang, and Ke Peng, and Fu-Hai Ji
September 2001, Circulation,
Nan Song, and Jiao Ma, and Xiao-Wen Meng, and Hong Liu, and Hui Wang, and Shao-Yong Song, and Qing-Cai Chen, and Hua-Yue Liu, and Juan Zhang, and Ke Peng, and Fu-Hai Ji
January 2016, American journal of translational research,
Nan Song, and Jiao Ma, and Xiao-Wen Meng, and Hong Liu, and Hui Wang, and Shao-Yong Song, and Qing-Cai Chen, and Hua-Yue Liu, and Juan Zhang, and Ke Peng, and Fu-Hai Ji
December 2021, Bioengineered,
Nan Song, and Jiao Ma, and Xiao-Wen Meng, and Hong Liu, and Hui Wang, and Shao-Yong Song, and Qing-Cai Chen, and Hua-Yue Liu, and Juan Zhang, and Ke Peng, and Fu-Hai Ji
June 2016, In vitro cellular & developmental biology. Animal,
Nan Song, and Jiao Ma, and Xiao-Wen Meng, and Hong Liu, and Hui Wang, and Shao-Yong Song, and Qing-Cai Chen, and Hua-Yue Liu, and Juan Zhang, and Ke Peng, and Fu-Hai Ji
February 2019, European review for medical and pharmacological sciences,
Nan Song, and Jiao Ma, and Xiao-Wen Meng, and Hong Liu, and Hui Wang, and Shao-Yong Song, and Qing-Cai Chen, and Hua-Yue Liu, and Juan Zhang, and Ke Peng, and Fu-Hai Ji
August 2020, Experimental and molecular pathology,
Copied contents to your clipboard!