Mitofilin Heterozygote Mice Display an Increase in Myocardial Injury and Inflammation after Ischemia/Reperfusion

被引:7
|
作者
Feng, Yansheng [1 ]
Aliagan, Abdulhafiz Imam [1 ]
Tombo, Nathalie [1 ]
Bopassa, Jean C. C. [1 ]
机构
[1] Univ Texas Hlth Sci Ctr San Antonio, Sch Med, Dept Cellular & Integrat Physiol, 7703 Floyd Curl Dr, San Antonio, TX 78229 USA
关键词
Mitofilin; Mic60; mitochondrial DNA; reactive oxygen species (ROS); SLC25As solute carriers; mPTP opening; mitochondrial calcium retention capacity; cGas; STING; p-p65; pathway; inflammatory markers; ischemia; reperfusion injury; MITOCHONDRIAL PERMEABILITY TRANSITION; ISCHEMIA-REPERFUSION INJURY; ACUTE LUNG INJURY; CELL-DEATH; PROTEIN; HEART; ACTIVATION; STRESS; PORE; OVEREXPRESSION;
D O I
10.3390/antiox12040921
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
Mitochondrial inner membrane protein (Mitofilin/Mic60) is part of a big complex that constituent the mitochondrial inner membrane organizing system (MINOS), which plays a critical role in maintaining mitochondrial architecture and function. We recently showed that Mitofilin physically binds to Cyclophilin D, and disruption of this interaction promotes the opening of mitochondrial permeability transition pore (mPTP) and determines the extent of I/R injury. Here, we investigated whether Mitofilin knockout in the mouse enhances myocardial injury and inflammation after I/R injury. We found that full-body deletion (homozygote) of Mitofilin induces a lethal effect in the offspring and that a single allele expression of Mitofilin is sufficient to rescue the mouse phenotype in normal conditions. Using non-ischemic hearts from wild-type (WT) and Mitofilin(+/-) (HET) mice, we report that the mitochondria structure and calcium retention capacity (CRC) required to induce the opening of mPTP were similar in both groups. However, the levels of mitochondrial dynamics proteins involved in both fusion/fission, including MFN2, DRP1, and OPA1, were slightly reduced in Mitofilin(+/-) mice compared to WT. After I/R, the CRC and cardiac functional recovery were reduced while the mitochondria structure was more damaged, and myocardial infarct size was increased in Mitofilin(+/-) mice compared to WT. Mitofilin(+/-) mice exhibited an increase in the mtDNA release in the cytosol and ROS production, as well as dysregulated SLC25As (3, 5, 11, and 22) solute carrier function, compared to WT. In addition, Mitofilin(+/-) mice displayed an increase in the transcript of pro-inflammatory markers, including IL-6, ICAM, and TNF-alpha. These results suggest that Mitofilin knockdown induces mitochondrial cristae damage that promotes dysregulation of SLC25As solute carriers, leading to an increase in ROS production and reduction in CRC after I/R. These effects are associated with an increase in the mtDNA release into the cytosol, where it activates signaling cascades leading to nuclear transcription of pro-inflammatory cytokines that aggravate I/R injury.
引用
收藏
页数:25
相关论文
共 50 条
  • [1] RIP3 Translocation into Mitochondria Promotes Mitofilin Degradation to Increase Inflammation and Kidney Injury after Renal Ischemia-Reperfusion
    Feng, Yansheng
    Aliagan, Abdulhafiz Imam
    Tombo, Nathalie
    Draeger, Derrick
    Bopassa, Jean C.
    CELLS, 2022, 11 (12)
  • [2] Inner mitochondrial membrane protein MPV17 mutant mice display increased myocardial injury after ischemia/reperfusion
    Madungwe, Ngonidzashe B.
    Feng, Yansheng
    Aliagan, Abdulhafiz Imam
    Tombo, Nathalie
    Kaya, Ferdinand
    Bopassa, Jean C.
    AMERICAN JOURNAL OF TRANSLATIONAL RESEARCH, 2020, 12 (07): : 3412 - 3428
  • [3] Crocetin alleviates myocardial ischemia/reperfusion injury by regulating inflammation and the unfolded protein response
    Yang, Ming
    Mao, Genxiang
    Ouyang, Lili
    Shi, Chenhui
    Hu, Pengfei
    Huang, Shuwei
    MOLECULAR MEDICINE REPORTS, 2020, 21 (02) : 641 - 648
  • [4] Myocardial ischemia-reperfusion injury and the influence of inflammation 
    Algoet, Michiel
    Janssens, Stefan
    Himmelreich, Uwe
    Gsell, Willy
    Pusovnik, Matic
    van den Eynde, Jef
    Oosterlinck, Wouter
    TRENDS IN CARDIOVASCULAR MEDICINE, 2023, 33 (06) : 357 - 366
  • [5] CREG protects from myocardial ischemia/reperfusion injury by regulating myocardial autophagy and apoptosis
    Song, Haixu
    Yan, Chenghui
    Tian, Xiaoxiang
    Zhu, Nan
    Li, Yang
    Liu, Dan
    Liu, Yanxia
    Liu, Meili
    Peng, Chengfei
    Zhang, Quanyu
    Gao, Erhe
    Han, Yaling
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE, 2017, 1863 (08): : 1893 - 1903
  • [6] Osthole attenuates myocardial ischemia/reperfusion injury in rats by inhibiting apoptosis and inflammation
    Wu, Jingguo
    Yang, Yang
    Xun, Nan
    Zeng, Lijin
    Li, Zhenyu
    Yang, Wen
    Liang, Yanbing
    Ma, Zhongfu
    Tang, Hao
    AMERICAN JOURNAL OF TRANSLATIONAL RESEARCH, 2018, 10 (04): : 1109 - 1116
  • [7] Oligophrenin1 protects mice against myocardial ischemia and reperfusion injury by modulating inflammation and myocardial apoptosis
    Niermann, Christina
    Gorressen, Simone
    Klier, Meike
    Gowert, Nina S.
    Billuart, Pierre
    Kelm, Malte
    Merx, Marc W.
    Elvers, Margitta
    CELLULAR SIGNALLING, 2016, 28 (08) : 967 - 978
  • [8] Clarithromycin attenuates myocardial ischemia-reperfusion injury
    Nakajima, Takuya
    Hishikari, Keiichi
    Ogawa, Masahito
    Watanabe, Ryo
    Suzuki, Jun-ichi
    Nagashima, Ayako
    Masumura, Mayumi
    Takayama, Kiyoshi
    Hirata, Yasunobu
    Nagai, Ryozo
    Isobe, Mitsuaki
    EXPERT OPINION ON THERAPEUTIC TARGETS, 2010, 14 (09) : 881 - 893
  • [9] Camphene as a Protective Agent in Myocardial Ischemia/Reperfusion Injury
    Stamatiou, Rodopi
    Anagnostopoulou, Maria
    Ioannidou-Kabouri, Konstantina
    Rapti, Chrysa
    Lazou, Antigone
    ANTIOXIDANTS, 2024, 13 (04)
  • [10] Myocardial ischemia/reperfusion injury: Mechanisms of injury and implications for management (Review)
    He, Jianfeng
    Liu, Danyong
    Zhao, Lixia
    Zhou, Dongcheng
    Rong, Jianhui
    Zhang, Liangqing
    Xia, Zhengyuan
    EXPERIMENTAL AND THERAPEUTIC MEDICINE, 2022, 23 (06)