CCN2 Aggravates the Immediate Oxidative Stress-DNA Damage Response following Renal Ischemia-Reperfusion Injury

被引:23
作者
Valentijn, Floris A. [1 ]
Knoppert, Sebastiaan N. [1 ]
Pissas, Georgios [2 ]
Rodrigues-Diez, Raul R. [3 ]
Marquez-Exposito, Laura [3 ]
Broekhuizen, Roel [1 ]
Mokry, Michal [4 ]
Kester, Lennart A. [1 ]
Falke, Lucas L. [1 ]
Goldschmeding, Roel [1 ]
Ruiz-Ortega, Marta [3 ]
Eleftheriadis, Theodoros [2 ]
Nguyen, Tri Q. [1 ]
机构
[1] Univ Med Ctr Utrecht, Dept Pathol, NL-3584 CX Utrecht, Netherlands
[2] Univ Thessaly, Fac Med, Dept Nephrol, Larisa 41222, Greece
[3] Univ Autonoma Madrid, Mol & Cellular Biol Renal & Vasc Pathol, Fdn Inst Invest Sanitaria, Fdn Jimenez Diaz, Madrid 28040, Spain
[4] Wilhelmina Childrens Hosp, Dept Pediat Gastroenterol, NL-3584 EA Utrecht, Netherlands
关键词
acute kidney injury; ischemia-reperfusion injury; oxidative stress response; DNA damage response; cell cycle arrest; cellular communication network factor 2; TISSUE GROWTH-FACTOR; ACUTE KIDNEY INJURY; GENE-EXPRESSION; ISCHEMIA/REPERFUSION INJURY; CTGF; MORTALITY; CONSEQUENCES; INHIBITION; METABOLISM; ACTIVATION;
D O I
10.3390/antiox10122020
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
AKI, due to the fact of altered oxygen supply after kidney transplantation, is characterized by renal ischemia-reperfusion injury (IRI). Recent data suggest that AKI to CKD progression may be driven by cellular senescence evolving from prolonged DNA damage response (DDR) following oxidative stress. Cellular communication factor 2 (CCN2, formerly called CTGF) is a major contributor to CKD development and was found to aggravate DNA damage and the subsequent DDR-cellular senescence-fibrosis sequence following renal IRI. We therefore investigated the impact of CCN2 inhibition on oxidative stress and DDR in vivo and in vitro. Four hours after reperfusion, full transcriptome RNA sequencing of mouse IRI kidneys revealed CCN2-dependent enrichment of several signaling pathways, reflecting a different immediate stress response to IRI. Furthermore, decreased staining for gamma H2AX and p-p53 indicated reduced DNA damage and DDR in tubular epithelial cells of CCN2 knockout (KO) mice. Three days after IRI, DNA damage and DDR were still reduced in CCN2 KO, and this was associated with reduced oxidative stress, marked by lower lipid peroxidation, protein nitrosylation, and kidney expression levels of Nrf2 target genes (i.e., HMOX1 and NQO1). Finally, silencing of CCN2 alleviated DDR and lipid peroxidation induced by anoxia-reoxygenation injury in cultured PTECs. Together, our observations suggest that CCN2 inhibition might mitigate AKI by reducing oxidative stress-induced DNA damage and the subsequent DDR. Thus, targeting CCN2 might help to limit post-IRI AKI.
引用
收藏
页数:16
相关论文
共 50 条
[21]   The proteasome inhibitor Bortezomib aggravates renal ischemia-reperfusion injury [J].
Huber, Julia M. ;
Tagwerker, Andrea ;
Heininger, Dorothea ;
Mayer, Gert ;
Rosenkranz, Alexander R. ;
Eller, Kathrin .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2009, 297 (02) :F451-F460
[22]   Persistent oxidative stress following renal ischemia-reperfusion injury increases ANG II hemodynamic and fibrotic activity [J].
Basile, David P. ;
Leonard, Ellen C. ;
Beal, Alisa G. ;
Schleuter, Devin ;
Friedrich, Jessica .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2012, 302 (11) :F1494-F1502
[23]   The protective effect of cannabinoid type 2 receptor activation on renal ischemia-reperfusion injury [J].
Cakir, Murat ;
Tekin, Suat ;
Doganyigit, Zuleyha ;
Cakan, Pinar ;
Kaymak, Emin .
MOLECULAR AND CELLULAR BIOCHEMISTRY, 2019, 462 (1-2) :123-132
[24]   UCP2 attenuates apoptosis of tubular epithelialcells in renal ischemia-reperfusion injury [J].
Zhou, Yang ;
Cai, Ting ;
Xu, Jing ;
Jiang, Lei ;
Wu, Jining ;
Sun, Qi ;
Zen, Ke ;
Yang, Junwei .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2017, 313 (04) :F926-F937
[25]   Effect of Acupuncture on Oxidative Stress Induced by Cerebral Ischemia-Reperfusion Injury [J].
Chen, Chao-Hsien ;
Hsieh, Ching-Liang .
ANTIOXIDANTS, 2020, 9 (03)
[26]   Protective effect of hyperoside against renal ischemia-reperfusion injury via modulating mitochondrial fission, oxidative stress, and apoptosis [J].
Wu, Lin ;
Li, Qing ;
Liu, Simeng ;
An, Xiaofei ;
Huang, Zhimin ;
Zhang, Bo ;
Yuan, Yanggang ;
Xing, Changying .
FREE RADICAL RESEARCH, 2019, 53 (07) :727-736
[27]   MicroRNA-27a-3p aggravates renal ischemia/reperfusion injury by promoting oxidative stress via targeting growth factor receptor-bound protein 2 [J].
Zhao, X-R ;
Zhang, Z. ;
Gao, M. ;
Li, L. ;
Sun, P-Y ;
Xu, L-N ;
Qi, Y. ;
Yin, L-H ;
Peng, J-Y .
PHARMACOLOGICAL RESEARCH, 2020, 155
[28]   Cellular communication network 2 (connective tissue growth factor) aggravates acute DNA damage and subsequent DNA damage response-senescence- fibrosis following kidney ischemia reperfusion injury [J].
Valentijn, Floris A. ;
Knoppert, Sebastiaan N. ;
Marquez-Exposito, Laura ;
Rodrigues-Diez, Raul R. ;
Pissas, Georgios ;
Tang, Jiaqi ;
Tejedor-Santamaria, Lucia ;
Broekhuizen, Roel ;
Samarakoon, Rohan ;
Eleftheriadis, Theodoros ;
Goldschmeding, Roel ;
Nguyen, Tri Q. ;
Ruiz-Ortega, Marta ;
Falke, Lucas L. .
KIDNEY INTERNATIONAL, 2022, 102 (06) :1305-1319
[29]   Knockdown of ELF4 aggravates renal injury in ischemia/reperfusion mice through promotion of pyroptosis, inflammation, oxidative stress, and endoplasmic reticulum stress [J].
Li, Li ;
Wang, Shunying ;
Wang, Wenming .
BMC MOLECULAR AND CELL BIOLOGY, 2023, 24 (01)
[30]   Akt1 is involved in tubular apoptosis and inflammatory response during renal ischemia-reperfusion injury [J].
Kim, Il Young ;
Park, Yeon Kyeong ;
Song, Sang Heon ;
Seong, Eun Young ;
Lee, Dong Won ;
Bae, Sun Sik ;
Lee, Soo Bong .
MOLECULAR BIOLOGY REPORTS, 2020, 47 (12) :9511-9520