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Erschienen in: Inflammation 2/2020

03.01.2020 | Original Article

lncRNA RMRP Prevents Mitochondrial Dysfunction and Cardiomyocyte Apoptosis via the miR-1-5p/hsp70 Axis in LPS-Induced Sepsis Mice

verfasst von: Ying Han, Yixin Cai, Xiaoquan Lai, Zhenling Wang, Shiqing Wei, Kun Tan, Min Xu, Hongyan Xie

Erschienen in: Inflammation | Ausgabe 2/2020

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Abstract

Both long non-coding RNA (lncRNA) RMRP and heat shock protein (HSP) 70 have been known to play crucial roles in inflammation. The present study investigated the roles of lncRNA RMRP and HSP70 protein 4 (HSPA4) in lipopolysaccharide (LPS)-induced sepsis. The C57BL/6 mice were treated with LPS, following which the cardiomyocytes were isolated for in vitro experiments. Further, a cardiac muscle cell line, HL-1 was transfected with plasmids expressing RMRP and HSPA4, si-NC, si-HSPA4, miR-1-5p mimic, and controls in vitro. Cell apoptosis, mitochondrial membrane potential (MMP), and levels of intracellular reactive oxygen species (ROS), mRNAs, and proteins were detected in the transfected mice tissues and cells. The LPS treatment significantly reduced the expression levels of RMRP, MMP, and mitochondrial cytochrome C. Moreover, it enhanced the cardiomyocyte apoptosis, intracellular ROS levels, cytoplasm cytochrome C levels, and the expression of caspase-3 and caspase-9 and nuclear factor κB (NF-κB) p65 subunit. The predicted RMRP-miR-1-5p-HSPA4 network was validated by co-transfection experiments in vitro in HL-1 cells. The transfection of miR-1-5p-treated cells with pcDNA-RMRP enhanced the levels of the protein HSPA4; however, no change at the mRNA level was observed. Moreover, miR-1-5p mimic attenuated the protective effect of pcDNA-HSPA4 against LPS-induced mitochondrial damage and apoptosis. In addition, we observed that silencing of HSPA4 increased the expression of nuclear p65; however, this effect could be reversed by co-transfection with pcDNA-RMRP. The lncRNA RMRP axis acts as a sponge for miR-1-5p. RMRP inhibits LPS-induced apoptosis of cardiomyocytes and mitochondrial damage by suppressing the post-transcriptional regulatory function of miR-1-5p on HSPA4. We believe that RMRP exhibits therapeutic potential for LPS-induced myocardial dysfunction both in vitro and in vivo.
Literatur
1.
Zurück zum Zitat Antonova, O.Y., M.M. Yurinskaya, S.Y. Funikov, M.B. Evgen'Ev, and M.G. Vinokurov. 2013. Exogenous heat shock protein HSP70 modulates lipopolysaccharide-induced macrophage activation. Doklady Biological Sciences 452 (1): 320–324.PubMedCrossRef Antonova, O.Y., M.M. Yurinskaya, S.Y. Funikov, M.B. Evgen'Ev, and M.G. Vinokurov. 2013. Exogenous heat shock protein HSP70 modulates lipopolysaccharide-induced macrophage activation. Doklady Biological Sciences 452 (1): 320–324.PubMedCrossRef
2.
Zurück zum Zitat Cawcutt, Kelly A., and Steve G. Peters. 2014. Severe sepsis and septic shock: clinical overview and update on management. Mayo Clinic Proceedings 89 (11): 1572–1578.PubMedCrossRef Cawcutt, Kelly A., and Steve G. Peters. 2014. Severe sepsis and septic shock: clinical overview and update on management. Mayo Clinic Proceedings 89 (11): 1572–1578.PubMedCrossRef
3.
Zurück zum Zitat Cheng, Y., Z. Xia, Y. Han, and J. Rong. 2016. Plant natural product formononetin protects rat cardiomyocyte H9c2 cells against oxygen glucose deprivation and reoxygenation via inhibiting ROS formation and promoting GSK-3β phosphorylation. Oxidative Medicine and Cellular Longevity 2016 (15). Cheng, Y., Z. Xia, Y. Han, and J. Rong. 2016. Plant natural product formononetin protects rat cardiomyocyte H9c2 cells against oxygen glucose deprivation and reoxygenation via inhibiting ROS formation and promoting GSK-3β phosphorylation. Oxidative Medicine and Cellular Longevity 2016 (15).
4.
Zurück zum Zitat Cui, Huachun, Na Xie, Zheng Tan, Sami Banerjee, Victor John Thannickal, Edward Abraham, and Gang Liu. 2014. The human long noncoding RNA lnc-IL7R regulates the inflammatory response. European Journal of Immunology 44 (7): 2085–2095.PubMedPubMedCentralCrossRef Cui, Huachun, Na Xie, Zheng Tan, Sami Banerjee, Victor John Thannickal, Edward Abraham, and Gang Liu. 2014. The human long noncoding RNA lnc-IL7R regulates the inflammatory response. European Journal of Immunology 44 (7): 2085–2095.PubMedPubMedCentralCrossRef
5.
Zurück zum Zitat Desagher, S., and J.C. Martinou. 2000. Mitochondria as the central control point of apoptosis. Trends in Cell Biology 10 (9): 369–377.PubMedCrossRef Desagher, S., and J.C. Martinou. 2000. Mitochondria as the central control point of apoptosis. Trends in Cell Biology 10 (9): 369–377.PubMedCrossRef
6.
Zurück zum Zitat Dispersyn, G.D., and M. Borgers. 2001. Apoptosis in the heart: about programmed cell death and survival. News in Physiological Sciences 16 (1): 41.PubMed Dispersyn, G.D., and M. Borgers. 2001. Apoptosis in the heart: about programmed cell death and survival. News in Physiological Sciences 16 (1): 41.PubMed
7.
Zurück zum Zitat Dou, C., N. Ding, J. Xing, C. Zhao, F. Kang, T. Hou, H. Quan, Y. Chen, Q. Dai, and F. Luo. 2016. Dihydroartemisinin attenuates lipopolysaccharide-induced osteoclastogenesis and bone loss via the mitochondria-dependent apoptosis pathway. Cell Death & Disease 7 (3): e2162.CrossRef Dou, C., N. Ding, J. Xing, C. Zhao, F. Kang, T. Hou, H. Quan, Y. Chen, Q. Dai, and F. Luo. 2016. Dihydroartemisinin attenuates lipopolysaccharide-induced osteoclastogenesis and bone loss via the mitochondria-dependent apoptosis pathway. Cell Death & Disease 7 (3): e2162.CrossRef
8.
Zurück zum Zitat Gao, C.K., H. Liu, C.J. Cui, Z.G. Liang, H. Yao, and Y. Tian. 2016. Roles of microRNA-195 in cardiomyocyte apoptosis induced by myocardial ischemia-reperfusion injury. Journal of Genetics 95 (1). Gao, C.K., H. Liu, C.J. Cui, Z.G. Liang, H. Yao, and Y. Tian. 2016. Roles of microRNA-195 in cardiomyocyte apoptosis induced by myocardial ischemia-reperfusion injury. Journal of Genetics 95 (1).
10.
Zurück zum Zitat Gupta, S., P. Goswami, J. Biswas, N. Joshi, S. Sharma, C. Nath, and S. Singh. 2015. 6-Hydroxydopamine and lipopolysaccharides induced DNA damage in astrocytes: involvement of nitric oxide and mitochondria. Mutation Research, Genetic Toxicology and Environmental Mutagenesis 778: 22–36.PubMedCrossRef Gupta, S., P. Goswami, J. Biswas, N. Joshi, S. Sharma, C. Nath, and S. Singh. 2015. 6-Hydroxydopamine and lipopolysaccharides induced DNA damage in astrocytes: involvement of nitric oxide and mitochondria. Mutation Research, Genetic Toxicology and Environmental Mutagenesis 778: 22–36.PubMedCrossRef
12.
Zurück zum Zitat Hu, Y., J.B. Yan, M.Z. Zheng, X.H. Song, L.L. Wang, Y.L. Shen, and Y.Y. Chen. 2015. Mitochondrial aldehyde dehydrogenase activity protects against lipopolysaccharide-induced cardiac dysfunction in rats. Molecular Medicine Reports 11 (2): 1509–1515.PubMedCrossRef Hu, Y., J.B. Yan, M.Z. Zheng, X.H. Song, L.L. Wang, Y.L. Shen, and Y.Y. Chen. 2015. Mitochondrial aldehyde dehydrogenase activity protects against lipopolysaccharide-induced cardiac dysfunction in rats. Molecular Medicine Reports 11 (2): 1509–1515.PubMedCrossRef
13.
Zurück zum Zitat Karabay, A.Z., F. Aktan, A. Sunguroğlu, and Z. Buyukbingol. 2014. Methylsulfonylmethane modulates apoptosis of LPS/IFN-γ-activated RAW 264.7 macrophage-like cells by targeting p53, Bax, Bcl-2, cytochrome c and PARP proteins. Immunopharmacology and Immunotoxicology 36 (6): 1–11.CrossRef Karabay, A.Z., F. Aktan, A. Sunguroğlu, and Z. Buyukbingol. 2014. Methylsulfonylmethane modulates apoptosis of LPS/IFN-γ-activated RAW 264.7 macrophage-like cells by targeting p53, Bax, Bcl-2, cytochrome c and PARP proteins. Immunopharmacology and Immunotoxicology 36 (6): 1–11.CrossRef
14.
Zurück zum Zitat Lim, C.C., C.S. Apstein, W.S. Colucci, and R. Liao. 2000. Impaired cell shortening and relengthening with increased pacing frequency are intrinsic to the senescent mouse cardiomyocyte. Journal of Molecular and Cellular Cardiology 32 (11): 2075–2082.PubMedCrossRef Lim, C.C., C.S. Apstein, W.S. Colucci, and R. Liao. 2000. Impaired cell shortening and relengthening with increased pacing frequency are intrinsic to the senescent mouse cardiomyocyte. Journal of Molecular and Cellular Cardiology 32 (11): 2075–2082.PubMedCrossRef
15.
Zurück zum Zitat Lou, Y., and Z. Lin. 2018. Pathogenesis of sepsis-induced myocardial dysfunction. Zhonghua Wei Zhong Bing Ji Jiu Yi Xue 30 (4): 374–376.PubMed Lou, Y., and Z. Lin. 2018. Pathogenesis of sepsis-induced myocardial dysfunction. Zhonghua Wei Zhong Bing Ji Jiu Yi Xue 30 (4): 374–376.PubMed
18.
Zurück zum Zitat Meng, Qingjun, Mingming Ren, Yanguang Li, and Xiang Song. n.d. lncRNA-RMRP acts as an oncogene in lung cancer. Meng, Qingjun, Mingming Ren, Yanguang Li, and Xiang Song. n.d. lncRNA-RMRP acts as an oncogene in lung cancer.
19.
Zurück zum Zitat Min, H.J., J.H. Yoon, and C.H. Kim. 2016. HSP70 is associated with the severity of inflammation in chronic rhinosinusitis. American Journal of Rhinology & Allergy 30 (4): 101–106.CrossRef Min, H.J., J.H. Yoon, and C.H. Kim. 2016. HSP70 is associated with the severity of inflammation in chronic rhinosinusitis. American Journal of Rhinology & Allergy 30 (4): 101–106.CrossRef
20.
Zurück zum Zitat Mo, Y., H. Hou, D. Li, Y. Liang, D. Chen, and Y. Zhou. 2014. Mitochondrial protein targets of radiosensitisation by 1,8-dihydroxy-3-acetyl-6-methyl-9,10 anthraquinone on nasopharyngeal carcinoma cells. European Journal of Pharmacology 738: 133–141.PubMedCrossRef Mo, Y., H. Hou, D. Li, Y. Liang, D. Chen, and Y. Zhou. 2014. Mitochondrial protein targets of radiosensitisation by 1,8-dihydroxy-3-acetyl-6-methyl-9,10 anthraquinone on nasopharyngeal carcinoma cells. European Journal of Pharmacology 738: 133–141.PubMedCrossRef
21.
Zurück zum Zitat Obernosterer, G., P.J. Leuschner, M. Alenius, and J. Martinez. 2006. Post-transcriptional regulation of microRNA expression. Rna-a Publication of the Rna Society 12 (7): 1161–1167.CrossRef Obernosterer, G., P.J. Leuschner, M. Alenius, and J. Martinez. 2006. Post-transcriptional regulation of microRNA expression. Rna-a Publication of the Rna Society 12 (7): 1161–1167.CrossRef
22.
Zurück zum Zitat Paraskevopoulou, Maria D., Georgios Georgakilas, Nikos Kostoulas, Martin Reczko, Manolis Maragkakis, Theodore M. Dalamagas, and Artemis G. Hatzigeorgiou. 2013. DIANA-LncBase: experimentally verified and computationally predicted microRNA targets on long non-coding RNAs. Nucleic Acids Research 41 (Database issue): 239–245.CrossRef Paraskevopoulou, Maria D., Georgios Georgakilas, Nikos Kostoulas, Martin Reczko, Manolis Maragkakis, Theodore M. Dalamagas, and Artemis G. Hatzigeorgiou. 2013. DIANA-LncBase: experimentally verified and computationally predicted microRNA targets on long non-coding RNAs. Nucleic Acids Research 41 (Database issue): 239–245.CrossRef
23.
Zurück zum Zitat Ren, Xuefang, Danielle N Doll, Heng Hu, Jiahong Sun, Sara E Lewis, Stephanie L Rellick, and James W Simpkins. 2015. Abstract W P105: lipopolysaccharide exacerbates stroke severity and compromises mitochondrial function in cerebral endothelium. 46 (Suppl 1). Ren, Xuefang, Danielle N Doll, Heng Hu, Jiahong Sun, Sara E Lewis, Stephanie L Rellick, and James W Simpkins. 2015. Abstract W P105: lipopolysaccharide exacerbates stroke severity and compromises mitochondrial function in cerebral endothelium. 46 (Suppl 1).
24.
Zurück zum Zitat Rudiger, Alain, and Mervyn Singer. 2007. Mechanisms of sepsis-induced cardiac dysfunction. Critical Care Medicine 35 (6): 1599–1608.PubMedCrossRef Rudiger, Alain, and Mervyn Singer. 2007. Mechanisms of sepsis-induced cardiac dysfunction. Critical Care Medicine 35 (6): 1599–1608.PubMedCrossRef
25.
Zurück zum Zitat Sendi, Parham, and Werner Zimmerli. 2015. The interaction between miR-141 and lncRNA-H19 in regulating cell proliferation and migration in gastric cancer. Cellular Physiology and Biochemistry 36 (4): 1440–1452.CrossRef Sendi, Parham, and Werner Zimmerli. 2015. The interaction between miR-141 and lncRNA-H19 in regulating cell proliferation and migration in gastric cancer. Cellular Physiology and Biochemistry 36 (4): 1440–1452.CrossRef
26.
Zurück zum Zitat Senf, Sarah M., Travis M. Howard, Bumsoo Ahn, Leonardo F. Ferreira, and Andrew R. Judge. 2013. Loss of the inducible Hsp70 delays the inflammatory response to skeletal muscle injury and severely impairs muscle regeneration. PLoS One 8 (4): 3183–3189.CrossRef Senf, Sarah M., Travis M. Howard, Bumsoo Ahn, Leonardo F. Ferreira, and Andrew R. Judge. 2013. Loss of the inducible Hsp70 delays the inflammatory response to skeletal muscle injury and severely impairs muscle regeneration. PLoS One 8 (4): 3183–3189.CrossRef
27.
Zurück zum Zitat Shao, Y., M. Ye, Q. Li, W. Sun, G. Ye, X. Zhang, Y. Yang, B. Xiao, and J. Guo. 2016. lncRNA-RMRP promotes carcinogenesis by acting as a miR-206 sponge and is used as a novel biomarker for gastric cancer. Oncotarget 7 (25). Shao, Y., M. Ye, Q. Li, W. Sun, G. Ye, X. Zhang, Y. Yang, B. Xiao, and J. Guo. 2016. lncRNA-RMRP promotes carcinogenesis by acting as a miR-206 sponge and is used as a novel biomarker for gastric cancer. Oncotarget 7 (25).
28.
Zurück zum Zitat Shu, Qiang. 2014. Differential expression profile of long non-coding RNAs from Gr-1+ CD11b+ myeloid cells in response to sepsis in mice (INM2P.424). Journal of Immunology. Shu, Qiang. 2014. Differential expression profile of long non-coding RNAs from Gr-1+ CD11b+ myeloid cells in response to sepsis in mice (INM2P.424). Journal of Immunology.
29.
Zurück zum Zitat Shynkar, Vasyl V., Andrey S. Klymchenko, Corinne Kunzelmann, Guy Duportail, Christian D. Muller, Alexander P. Demchenko, Jean-Marie Freyssinet, and Yves Mely. 2007. Fluorescent biomembrane probe for ratiometric detection of apoptosis. Journal of the American Chemical Society 129 (7): 2187–2193.PubMedCrossRef Shynkar, Vasyl V., Andrey S. Klymchenko, Corinne Kunzelmann, Guy Duportail, Christian D. Muller, Alexander P. Demchenko, Jean-Marie Freyssinet, and Yves Mely. 2007. Fluorescent biomembrane probe for ratiometric detection of apoptosis. Journal of the American Chemical Society 129 (7): 2187–2193.PubMedCrossRef
30.
Zurück zum Zitat Stoyanoff, T.R., J.S. Todaro, M.V. Aguirre, M.C. Zimmermann, and N.C. Brandan. 2014. Amelioration of lipopolysaccharide-induced acute kidney injury by erythropoietin: involvement of mitochondria-regulated apoptosis. Toxicology 318 (1): 13–21.PubMedCrossRef Stoyanoff, T.R., J.S. Todaro, M.V. Aguirre, M.C. Zimmermann, and N.C. Brandan. 2014. Amelioration of lipopolysaccharide-induced acute kidney injury by erythropoietin: involvement of mitochondria-regulated apoptosis. Toxicology 318 (1): 13–21.PubMedCrossRef
31.
Zurück zum Zitat Su, Zhaoran, Xiaofei Zhi, Qun Zhang, Li Yang, Hao Xu, and Xu. Zekuan. 2016. lncRNA H19 functions as a competing endogenous RNA to regulate AQP3 expression by sponging miR-874 in the intestinal barrier. FEBS Letters 590. Su, Zhaoran, Xiaofei Zhi, Qun Zhang, Li Yang, Hao Xu, and Xu. Zekuan. 2016. lncRNA H19 functions as a competing endogenous RNA to regulate AQP3 expression by sponging miR-874 in the intestinal barrier. FEBS Letters 590.
33.
Zurück zum Zitat Tanaka, T., A. Shibazaki, R. Ono, and T. Kaisho. 2014. HSP70 mediates degradation of the p65 subunit of nuclear factor κB to inhibit inflammatory signaling. Science Signaling 7 (356): ra119.PubMedCrossRef Tanaka, T., A. Shibazaki, R. Ono, and T. Kaisho. 2014. HSP70 mediates degradation of the p65 subunit of nuclear factor κB to inhibit inflammatory signaling. Science Signaling 7 (356): ra119.PubMedCrossRef
34.
Zurück zum Zitat Toral, Marta, Miguel Romero, Rosario Jiménez, Iñaki Robles-Vera, Juan Tamargo, María Carmen Martínez, Francisco Pérez-Vizcaíno, and Juan Duarte. 2016. Role of UCP2 in the protective effects of PPARβ/δ activation on lipopolysaccharide-induced endothelial dysfunction. Biochemical Pharmacology 110–111: 25–36.PubMedCrossRef Toral, Marta, Miguel Romero, Rosario Jiménez, Iñaki Robles-Vera, Juan Tamargo, María Carmen Martínez, Francisco Pérez-Vizcaíno, and Juan Duarte. 2016. Role of UCP2 in the protective effects of PPARβ/δ activation on lipopolysaccharide-induced endothelial dysfunction. Biochemical Pharmacology 110–111: 25–36.PubMedCrossRef
35.
Zurück zum Zitat Tsai, K.L., H.J. Liang, Z.D. Yang, S.I. Lue, S.L. Yang, and C. Hsu. 2014. Early inactivation of PKCε associates with late mitochondrial translocation of BAD and apoptosis in ventricle of septic rat. Journal of Surgical Research 186 (1): 278–286.PubMedCrossRef Tsai, K.L., H.J. Liang, Z.D. Yang, S.I. Lue, S.L. Yang, and C. Hsu. 2014. Early inactivation of PKCε associates with late mitochondrial translocation of BAD and apoptosis in ventricle of septic rat. Journal of Surgical Research 186 (1): 278–286.PubMedCrossRef
36.
Zurück zum Zitat Tsoyi, K., T.Y. Lee, Y.S. Lee, H.J. Kim, H.G. Seo, J.H. Lee, and K.C. Chang. 2009. Heme-oxygenase-1 induction and carbon monoxide-releasing molecule inhibit lipopolysaccharide (LPS)-induced high-mobility group box 1 release in vitro and improve survival of mice in LPS- and cecal ligation and puncture-induced sepsis model in vivo. Molecular Pharmacology 76 (1): 173–182.PubMedCrossRef Tsoyi, K., T.Y. Lee, Y.S. Lee, H.J. Kim, H.G. Seo, J.H. Lee, and K.C. Chang. 2009. Heme-oxygenase-1 induction and carbon monoxide-releasing molecule inhibit lipopolysaccharide (LPS)-induced high-mobility group box 1 release in vitro and improve survival of mice in LPS- and cecal ligation and puncture-induced sepsis model in vivo. Molecular Pharmacology 76 (1): 173–182.PubMedCrossRef
37.
Zurück zum Zitat Wang, P., Q. He, and J. Zhu. 2016. Emodin-8-O-glucuronic acid, from the traditional Chinese medicine qinghuobaiduyin, affects the secretion of inflammatory cytokines in LPS-stimulated raw 264.7 cells via HSP70. Molecular Medicine Reports. Wang, P., Q. He, and J. Zhu. 2016. Emodin-8-O-glucuronic acid, from the traditional Chinese medicine qinghuobaiduyin, affects the secretion of inflammatory cytokines in LPS-stimulated raw 264.7 cells via HSP70. Molecular Medicine Reports.
38.
Zurück zum Zitat Wu, Chung Yin. 2011. Induction of HSPA4 and HSPA14 by NBS1 overexpression contributes to NBS1-induced in vitro metastatic and transformation activity. Journal of Biomedical Science 18 (1): 1–6.PubMedPubMedCentralCrossRef Wu, Chung Yin. 2011. Induction of HSPA4 and HSPA14 by NBS1 overexpression contributes to NBS1-induced in vitro metastatic and transformation activity. Journal of Biomedical Science 18 (1): 1–6.PubMedPubMedCentralCrossRef
39.
Zurück zum Zitat Wu, Hongwei, Jinfeng Liu, Li Wei, Liu Gang, and Zhenguang Li. 2016. lncRNA-HOTAIR promotes TNF-α production in cardiomyocytes of LPS-induced sepsis mice by activating NF-κB pathway. Biochemical and Biophysical Research Communications 471 (1): 240–246.PubMedCrossRef Wu, Hongwei, Jinfeng Liu, Li Wei, Liu Gang, and Zhenguang Li. 2016. lncRNA-HOTAIR promotes TNF-α production in cardiomyocytes of LPS-induced sepsis mice by activating NF-κB pathway. Biochemical and Biophysical Research Communications 471 (1): 240–246.PubMedCrossRef
40.
Zurück zum Zitat Yang, Z., L. Zhuang, P. Szatmary, L. Wen, H. Sun, Y. Lu, Q. Xu, and X. Chen. 2015. Upregulation of heat shock proteins (HSPA12A, HSP90B1, HSPA4, HSPA5 and HSPA6) in tumour tissues is associated with poor outcomes from HBV-related early-stage hepatocellular carcinoma. International Journal of Medical Sciences 12 (3): 256–263.PubMedPubMedCentralCrossRef Yang, Z., L. Zhuang, P. Szatmary, L. Wen, H. Sun, Y. Lu, Q. Xu, and X. Chen. 2015. Upregulation of heat shock proteins (HSPA12A, HSP90B1, HSPA4, HSPA5 and HSPA6) in tumour tissues is associated with poor outcomes from HBV-related early-stage hepatocellular carcinoma. International Journal of Medical Sciences 12 (3): 256–263.PubMedPubMedCentralCrossRef
41.
Zurück zum Zitat Yurinskaya, M.M., S.Y. Funikov, M.B. Evgen’Ev, and M.G. Vinokurov. 2016. Exogenous heat shock protein HSP70 reduces response of human neuroblastoma cells to lipopolysaccharide. Doklady. Biochemistry and Biophysics 469 (1): 239–243.PubMedCrossRef Yurinskaya, M.M., S.Y. Funikov, M.B. Evgen’Ev, and M.G. Vinokurov. 2016. Exogenous heat shock protein HSP70 reduces response of human neuroblastoma cells to lipopolysaccharide. Doklady. Biochemistry and Biophysics 469 (1): 239–243.PubMedCrossRef
42.
Zurück zum Zitat Zhang, Dianbao, Jing Wang, Zhe Wang, Tao Zhang, Ping Shi, Xiliang Wang, Feng Zhao, Xiaoyu Liu, Xuewen Lin, and Xining Pang. 2015. miR-136 modulates TGF-β1-induced proliferation arrest by targeting PPP2R2A in keratinocytes. BioMed Research International 2015. Zhang, Dianbao, Jing Wang, Zhe Wang, Tao Zhang, Ping Shi, Xiliang Wang, Feng Zhao, Xiaoyu Liu, Xuewen Lin, and Xining Pang. 2015. miR-136 modulates TGF-β1-induced proliferation arrest by targeting PPP2R2A in keratinocytes. BioMed Research International 2015.
43.
Zurück zum Zitat Zhao, G., Z. Su, D. Song, Y. Mao, and X. Mao. 2016. The long noncoding RNA MALAT1 regulates the lipopolysaccharide-induced inflammatory response through its interaction with NF-κB. FEBS Letters. Zhao, G., Z. Su, D. Song, Y. Mao, and X. Mao. 2016. The long noncoding RNA MALAT1 regulates the lipopolysaccharide-induced inflammatory response through its interaction with NF-κB. FEBS Letters.
44.
Zurück zum Zitat Zhu, N., X. Feng, C. He, H. Gao, L. Yang, Q. Ma, L. Guo, Y. Qiao, H. Yang, and T. Ma. 2011. Defective macrophage function in aquaporin-3 deficiency. FASEB Journal 25 (12): 4233–4239.PubMedCrossRef Zhu, N., X. Feng, C. He, H. Gao, L. Yang, Q. Ma, L. Guo, Y. Qiao, H. Yang, and T. Ma. 2011. Defective macrophage function in aquaporin-3 deficiency. FASEB Journal 25 (12): 4233–4239.PubMedCrossRef
Metadaten
Titel
lncRNA RMRP Prevents Mitochondrial Dysfunction and Cardiomyocyte Apoptosis via the miR-1-5p/hsp70 Axis in LPS-Induced Sepsis Mice
verfasst von
Ying Han
Yixin Cai
Xiaoquan Lai
Zhenling Wang
Shiqing Wei
Kun Tan
Min Xu
Hongyan Xie
Publikationsdatum
03.01.2020
Verlag
Springer US
Erschienen in
Inflammation / Ausgabe 2/2020
Print ISSN: 0360-3997
Elektronische ISSN: 1573-2576
DOI
https://doi.org/10.1007/s10753-019-01141-8

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