TY - JOUR
T1 - Fis1 deficiencies differentially affect mitochondrial quality in skeletal muscle
AU - Zhang, Zhe
AU - Sliter, Danielle A.
AU - Bleck, Christopher K.E.
AU - Ding, Shuzhe
N1 - Publisher Copyright:
© 2019 Elsevier B.V. and Mitochondria Research Society
PY - 2019/11
Y1 - 2019/11
N2 - Mitochondrial dynamics and mitophagy are important aspects of mitochondrial quality control, and are linked to neurodegenerative diseases and muscular diseases. Fis1, a protein on the mitochondrial outer membrane, is thought to mediate mitochondrial fission. However, Fis1 null worms and mammalian cells only display mild fission defects but show aberrant mitophagy. To assess Fis1 function in vivo, we generated conditional knock-out Fis1 mice to allow for specific Fis1 deletion in adult skeletal muscle. In the absence of Fis1 in Type I muscle, mitochondrial hyperfusion, respiratory chain deficiency, and increased mitophagy were found. Moreover, abnormal mitophagy was aggravated by endurance exhaustive exercise stress (EEE), suggesting that Fis1 is involved in maintaining normal mitophagy in mitochondria-rich Type I muscle during exercise. Additionally, Fis1 loss induced delayed onset muscle ultrastructure change (DOMUC) in Type I muscle and strong inflammation in response to acute exhaustive exercise (EE). Thus, we identify a role for Fis1 in maintaining normal mitochondrial structure and function at rest and under exercise stress.
AB - Mitochondrial dynamics and mitophagy are important aspects of mitochondrial quality control, and are linked to neurodegenerative diseases and muscular diseases. Fis1, a protein on the mitochondrial outer membrane, is thought to mediate mitochondrial fission. However, Fis1 null worms and mammalian cells only display mild fission defects but show aberrant mitophagy. To assess Fis1 function in vivo, we generated conditional knock-out Fis1 mice to allow for specific Fis1 deletion in adult skeletal muscle. In the absence of Fis1 in Type I muscle, mitochondrial hyperfusion, respiratory chain deficiency, and increased mitophagy were found. Moreover, abnormal mitophagy was aggravated by endurance exhaustive exercise stress (EEE), suggesting that Fis1 is involved in maintaining normal mitophagy in mitochondria-rich Type I muscle during exercise. Additionally, Fis1 loss induced delayed onset muscle ultrastructure change (DOMUC) in Type I muscle and strong inflammation in response to acute exhaustive exercise (EE). Thus, we identify a role for Fis1 in maintaining normal mitochondrial structure and function at rest and under exercise stress.
KW - Exhaustive exercise
KW - Fis1
KW - Inflammation response
KW - Mitochondrial dynamics
KW - Mitophagy
UR - https://www.scopus.com/pages/publications/85073437954
U2 - 10.1016/j.mito.2019.09.005
DO - 10.1016/j.mito.2019.09.005
M3 - 文章
C2 - 31526891
AN - SCOPUS:85073437954
SN - 1567-7249
VL - 49
SP - 217
EP - 226
JO - Mitochondrion
JF - Mitochondrion
ER -