TY - JOUR
T1 - Bif-1 interacts with prohibitin-2 to regulate mitochondrial inner membrane during cell stress and apoptosis
AU - Cho, Sung Gyu
AU - Xiao, Xiao
AU - Wang, Shixuan
AU - Gao, Hua
AU - Rafikov, Ruslan
AU - Black, Stephen
AU - Huang, Shang
AU - Ding, Han Fei
AU - Yoon, Yisang
AU - Kirken, Robert A.
AU - Yin, Xiao Ming
AU - Wang, Hong Gang
AU - Dong, Zheng
N1 - Funding Information:
The study was supported in part by grants Department of Veterans Affairs (BX000319) and the National Institutes of Health (DK58831, DK87843, CA82197). Dr. Dong is a recipient of Senior Research Career Scientist award of Department of Veterans Affairs.
Funding Information:
Dr. Cho, Dr. Xiao, Dr. S. Wang, and Dr. Dong designed experiments. Dr. Cho, Dr. Xiao, Dr. S. Wang, Dr. Gao, Dr. Rafikov, and Dr. Kirken performed experiments. Dr. Cho, Dr. Xiao, Dr. S. Wang, Dr. Black, Dr. Huang, Dr. Ding, Dr. Yoon, Dr. H.-G. Wang, and Dr. Dong analyzed results. Dr. Cho, Dr. Xiao, Dr. S. Wang, and Dr. Dong wrote the manuscript. The study was supported in part by grants Department of Veterans Affairs (BX000319) and the National Institutes of Health (DK58831, DK87843, CA82197). Dr. Dong is a recipient of Senior Research Career Scientist award of Department of Veterans Affairs. We thank Dr. Richard Morrison at University of Washington (Seattle, WA) for transferring Bif-1 KO mice. We also thank Dr. Andrey Shaw at Washington University (St. Louis, MO) and Dr. Yashpal Kanwar at Northwestern University (Chicago, IL) for advice on immunogold electron microscopy.
Publisher Copyright:
© 2019 by the American Society of Nephrology.
PY - 2019/7
Y1 - 2019/7
N2 - Background Mitochondria are dynamic organelles that undergo fission and fusion. During cell stress, mitochondrial dynamics shift to fission, leading to mitochondrial fragmentation, membrane leakage, and apoptosis. Mitochondrial fragmentation requires the cleavage of both outer and inner membranes, but the mechanism of inner membrane cleavage is unclear. Bif-1 and prohibitin-2 may regulate mitochondrial dynamics. Methods We used azide-induced ATP depletion to incite cell stress in mouse embryonic fibroblasts and renal proximal tubular cells, and renal ischemia-reperfusion to induce stress in mice. We also used knockout cells and mice to determine the role of Bif-1, and used multiple techniques to analyze the molecular interaction between Bif-1 and prohibitin-2. Results Upon cell stress, Bif-1 translocated to mitochondria to bind prohibitin-2, resulting in the disruption of prohibitin complex and proteolytic inactivation of the inner membrane fusion protein OPA1. Bif-1-deficiency inhibited prohibitin complex disruption, OPA1 proteolysis, mitochondrial fragmentation, and apoptosis. Domain deletion analysis indicated that Bif-1 interacted with prohibitin-2 via its C-terminus. Notably, mutation of Bif-1 at its C-terminal tryptophan-344 not only prevented Bif-1/prohibitin-2 interaction but also reduced prohibitin complex disruption, OPA1 proteolysis, mitochondrial fragmentation, and apoptosis, supporting a pathogenic role of Bif-1/prohibitin-2 interaction. In mice, Bif-1 bound prohibitin-2 during renal ischemia/reperfusion injury, and Bif-1-deficiency protected against OPA1 proteolysis, mitochondrial fragmentation, apoptosis and kidney injury. Conclusions These findings suggest that during cell stress, Bif-1 regulates mitochondrial inner membrane by interacting with prohibitin-2 to disrupt prohibitin complexes and induce OPA1 proteolysis and inactivation.
AB - Background Mitochondria are dynamic organelles that undergo fission and fusion. During cell stress, mitochondrial dynamics shift to fission, leading to mitochondrial fragmentation, membrane leakage, and apoptosis. Mitochondrial fragmentation requires the cleavage of both outer and inner membranes, but the mechanism of inner membrane cleavage is unclear. Bif-1 and prohibitin-2 may regulate mitochondrial dynamics. Methods We used azide-induced ATP depletion to incite cell stress in mouse embryonic fibroblasts and renal proximal tubular cells, and renal ischemia-reperfusion to induce stress in mice. We also used knockout cells and mice to determine the role of Bif-1, and used multiple techniques to analyze the molecular interaction between Bif-1 and prohibitin-2. Results Upon cell stress, Bif-1 translocated to mitochondria to bind prohibitin-2, resulting in the disruption of prohibitin complex and proteolytic inactivation of the inner membrane fusion protein OPA1. Bif-1-deficiency inhibited prohibitin complex disruption, OPA1 proteolysis, mitochondrial fragmentation, and apoptosis. Domain deletion analysis indicated that Bif-1 interacted with prohibitin-2 via its C-terminus. Notably, mutation of Bif-1 at its C-terminal tryptophan-344 not only prevented Bif-1/prohibitin-2 interaction but also reduced prohibitin complex disruption, OPA1 proteolysis, mitochondrial fragmentation, and apoptosis, supporting a pathogenic role of Bif-1/prohibitin-2 interaction. In mice, Bif-1 bound prohibitin-2 during renal ischemia/reperfusion injury, and Bif-1-deficiency protected against OPA1 proteolysis, mitochondrial fragmentation, apoptosis and kidney injury. Conclusions These findings suggest that during cell stress, Bif-1 regulates mitochondrial inner membrane by interacting with prohibitin-2 to disrupt prohibitin complexes and induce OPA1 proteolysis and inactivation.
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U2 - 10.1681/ASN.2018111117
DO - 10.1681/ASN.2018111117
M3 - Article
C2 - 31126972
AN - SCOPUS:85069236437
SN - 1046-6673
VL - 30
SP - 1174
EP - 1191
JO - Journal of the American Society of Nephrology : JASN
JF - Journal of the American Society of Nephrology : JASN
IS - 7
ER -