Intra- and Intercellular Quality Control Mechanisms of Mitochondria

被引:65
作者
Kiriyama, Yoshimitsu [1 ]
Nochi, Hiromi [1 ]
机构
[1] Tokushima Bunri Univ, Kagawa Sch Pharmaceut Sci, Shido 1314-1, Sanuki, Kagawa 7692193, Japan
关键词
mitochondria; mitophagy; transmitophgy; PGC1; mitofusin; DRP1; MIRO1; CD38; NUCLEAR RESPIRATORY FACTORS; TRANSCRIPTION FACTOR; STRUCTURALLY DISTINCT; PGC-1; FAMILY; MITOPHAGY; FISSION; AUTOPHAGY; CELLS; UBIQUITIN; PINK1;
D O I
10.3390/cells7010001
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Mitochondria function to generate ATP and also play important roles in cellular homeostasis, signaling, apoptosis, autophagy, and metabolism. The loss of mitochondrial function results in cell death and various types of diseases. Therefore, quality control of mitochondria via intra- and intercellular pathways is crucial. Intracellular quality control consists of biogenesis, fusion and fission, and degradation of mitochondria in the cell, whereas intercellular quality control involves tunneling nanotubes and extracellular vesicles. In this review, we outline the current knowledge on the intra- and intercellular quality control mechanisms of mitochondria.
引用
收藏
页数:11
相关论文
共 89 条
[51]   Mitochondrial dynamics and mitochondrial quality control [J].
Ni, Hong-Min ;
Williams, Jessica A. ;
Ding, Wen-Xing .
REDOX BIOLOGY, 2015, 4 :6-13
[52]   Structurally distinct membrane nanotubes between human macrophages support long-distance vesicular traffic or surfing of bacteria [J].
Onfelt, Born ;
Nedvetzki, Shlomo ;
Benninger, Richard K. P. ;
Purbhoo, Marco A. ;
Sowinski, Stefanie ;
Hume, Alistair N. ;
Seabra, Miguel C. ;
Neil, Mark A. A. ;
French, Paul M. W. ;
Davis, Daniel M. .
JOURNAL OF IMMUNOLOGY, 2006, 177 (12) :8476-8483
[53]   Drp1-dependent mitochondrial fission via MiD49/51 is essential for apoptotic cristae remodeling [J].
Otera, Hidenori ;
Miyata, Non ;
Kuge, Osamu ;
Mihara, Katsuyoshi .
JOURNAL OF CELL BIOLOGY, 2016, 212 (05) :531-544
[54]   Mff is an essential factor for mitochondrial recruitment of Drp1 during mitochondrial fission in mammalian cells [J].
Otera, Hidenori ;
Wang, Chunxin ;
Cleland, Megan M. ;
Setoguchi, Kiyoko ;
Yokota, Sadaki ;
Youle, Richard J. ;
Mihara, Katsuyoshi .
JOURNAL OF CELL BIOLOGY, 2010, 191 (06) :1141-1158
[55]   MiD49 and MiD51, new components of the mitochondrial fission machinery [J].
Palmer, Catherine S. ;
Osellame, Laura D. ;
Laine, David ;
Koutsopoulos, Olga S. ;
Frazier, Ann E. ;
Ryan, Michael T. .
EMBO REPORTS, 2011, 12 (06) :565-573
[56]   Mesenchymal stem cells use extracellular vesicles to outsource mitophagy and shuttle microRNAs [J].
Phinney, Donald G. ;
Di Giuseppe, Michelangelo ;
Njah, Joel ;
Sala, Ernest ;
Shiva, Sruti ;
St Croix, Claudette M. ;
Stolz, Donna B. ;
Watkins, Simon C. ;
Di, Y. Peter ;
Leikauf, George D. ;
Kolls, Jay ;
Riches, David W. H. ;
Deiuliis, Giuseppe ;
Kaminski, Naftali ;
Boregowda, Siddaraju V. ;
McKenna, David H. ;
Ortiz, Luis A. .
NATURE COMMUNICATIONS, 2015, 6
[57]   Human Mitochondrial Transcription Factor B2 Is Required for Promoter Melting during Initiation of Transcription [J].
Posse, Viktor ;
Gustafsson, Claes M. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2017, 292 (07) :2637-2645
[58]   Bnip3-mediated mitochondrial autophagy is independent of the mitochondrial permeability transition pore [J].
Quinsay, Melissa N. ;
Thomas, Robert L. ;
Lee, Youngil ;
Gustafsson, Asa B. .
AUTOPHAGY, 2010, 6 (07) :855-862
[59]   Human mitochondrial transcription factors TFAM and TFB2M work synergistically in promoter melting during transcription initiation [J].
Ramachandran, Aparna ;
Basu, Urmimala ;
Sultana, Shemaila ;
Nandakumar, Divya ;
Patel, Smita S. .
NUCLEIC ACIDS RESEARCH, 2017, 45 (02) :861-874
[60]   The Miro GTPases: At the heart of the mitochondrial transport machinery [J].
Reis, Katarina ;
Fransson, Asa ;
Aspenstrom, Pontus .
FEBS LETTERS, 2009, 583 (09) :1391-1398