PINK1 deficiency impairs osteoblast differentiation through aberrant mitochondrial homeostasis

被引:69
作者
Lee, So-Young [1 ]
An, Hyun-Ju [1 ,2 ]
Kim, Jin Man [3 ]
Sung, Min-Ji [1 ]
Kim, Do Kyung [4 ]
Kim, Hyung Kyung [5 ]
Oh, Jongbeom [2 ]
Jeong, Hye Yun [1 ]
Lee, Yu Ho [1 ]
Yang, Taeyoung [1 ]
Kim, Jun Han [2 ]
Lim, Ha Jeong [1 ]
Lee, Soonchul [2 ]
机构
[1] CHA Univ, Sch Med, CHA Bundang Med Ctr, Dept Internal Med, Seongnam Si 13496, South Korea
[2] CHA Univ, Sch Med, CHA Bundang Med Ctr, Dept Orthopaed Surg, 59 Yatap Ro, Seongnam Si 13496, South Korea
[3] Seoul Natl Univ, Sch Dent, Dept Oral Microbiol & Immunol, Seoul 03080, South Korea
[4] CHA Grad Sch Med, 120 Hyeryong Ro, Pochon 11160, South Korea
[5] Kyung Hee Univ, Coll Med, Kyung Hee Univ Hosp Gangdong, Dept Pathol, Seoul 05278, South Korea
关键词
Mitochondria; Osteogenesis; Osteoporosis; PINK1; PARKIN; MITOPHAGY; FUSION; PROTECTS; STRESS; MICE;
D O I
10.1186/s13287-021-02656-4
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Background PTEN-induced kinase 1 (PINK1) is a serine/threonine-protein kinase in mitochondria that is critical for mitochondrial quality control. PINK1 triggers mitophagy, a selective autophagy of mitochondria, and is involved in mitochondrial regeneration. Although increments of mitochondrial biogenesis and activity are known to be crucial during differentiation, data regarding the specific role of PINK1 in osteogenic maturation and bone remodeling are limited. Methods We adopted an ovariectomy model in female wildtype and Pink1(-/-) mice. Ovariectomized mice were analyzed using micro-CT, H&E staining, Masson's trichrome staining. RT-PCR, western blot, immunofluorescence, alkaline phosphatase, and alizarin red staining were performed to assess the expression of PINK1 and osteogenic markers in silencing of PINK1 MC3T3-E1 cells. Clinical relevance of PINK1 expression levels was determined via qRT-PCR analysis in normal and osteoporosis patients. Results A significant decrease in bone mass and collagen deposition was observed in the femurs of Pink1(-/-) mice after ovariectomy. Ex vivo, differentiation of osteoblasts was inhibited upon Pink1 downregulation, accompanied by impaired mitochondrial homeostasis, increased mitochondrial reactive oxygen species production, and defects in mitochondrial calcium handling. Furthermore, PINK1 expression was reduced in bones from patients with osteoporosis, which supports the practical role of PINK1 in human bone disease. Conclusions In this study, we demonstrated that activation of PINK1 is a requisite in osteoblasts during differentiation, which is related to mitochondrial quality control and low reactive oxygen species production. Enhancing PINK1 activity might be a possible treatment target in bone diseases as it can promote a healthy pool of functional mitochondria in osteoblasts.
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页数:14
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共 66 条
[21]   Electron transfer between cytochrome c and p66Shc generates reactive oxygen species that trigger mitochondrial apoptosis [J].
Giorgio, M ;
Migliaccio, E ;
Orsini, F ;
Paolucci, D ;
Moroni, M ;
Contursi, C ;
Pelliccia, G ;
Luzi, L ;
Minucci, S ;
Marcaccio, M ;
Pinton, P ;
Rizzuto, R ;
Bernardi, P ;
Paolucci, F ;
Pelicci, PG .
CELL, 2005, 122 (02) :221-233
[22]   Mitochondrial processing peptidase regulates PINK1 processing, import and Parkin recruitment [J].
Greene, Andrew W. ;
Grenier, Karl ;
Aguileta, Miguel A. ;
Muise, Stephanie ;
Farazifard, Rasoul ;
Haque, M. Emdadul ;
McBride, Heidi M. ;
Park, David S. ;
Fon, Edward A. .
EMBO REPORTS, 2012, 13 (04) :378-385
[23]   PINK1 Activation and Translocation to Mitochondria-Associated Membranes Mediates Mitophagy and Protects Against Hepatic Ischemia/Reperfusion Injury [J].
Gu, Jian ;
Zhang, Tao ;
Guo, Jianrong ;
Chen, Ke ;
Li, Huili ;
Wang, Jiliang .
SHOCK, 2020, 54 (06) :783-793
[24]   PINK1 phosphorylates Drp1(S616)to regulate mitophagy-independent mitochondrial dynamics [J].
Han, Hailong ;
Tan, Jieqiong ;
Wang, Ruoxi ;
Wan, Huida ;
He, Yaohui ;
Yan, Xinxiang ;
Guo, Jifeng ;
Gao, Qingtao ;
Li, Jie ;
Shang, Shuai ;
Chen, Fang ;
Tian, Runyi ;
Liu, Wen ;
Liao, Lujian ;
Tang, Beisha ;
Zhang, Zhuohua .
EMBO REPORTS, 2020, 21 (08)
[25]   KLF2 regulates osteoblast differentiation by targeting of Runx2 [J].
Hou, Zhenyang ;
Wang, Zhen ;
Tao, Yunxia ;
Bai, Jiaxiang ;
Yu, Binqing ;
Shen, Jining ;
Sun, Houyi ;
Xiao, Long ;
Xu, Yaozeng ;
Zhou, Jun ;
Wang, Zhirong ;
Geng, Dechun .
LABORATORY INVESTIGATION, 2019, 99 (02) :271-280
[26]  
Ikeda Kyoji, 2014, J Bone Metab, V21, P163, DOI 10.11005/jbm.2014.21.3.163
[27]   The PINK1 kinase-driven ubiquitin ligase Parkin promotes mitochondrial protein import through the presequence pathway in living cells [J].
Jacoupy, M. ;
Hamon-Keromen, E. ;
Ordureau, A. ;
Erpapazoglou, Z. ;
Coge, F. ;
Corvol, J-C ;
Nosjean, O. ;
la Cour, C. Mannoury ;
Millan, M. J. ;
Boutin, J. A. ;
Harper, J. W. ;
Brice, A. ;
Guedin, D. ;
Gautier, C. A. ;
Corti, O. .
SCIENTIFIC REPORTS, 2019, 9 (1)
[28]   Alterations in mitochondria and mtTFA in response to LPS-induced differentiation of B-cells [J].
Kain, KH ;
Popov, VL ;
Herzog, NK .
BIOCHIMICA ET BIOPHYSICA ACTA-GENE STRUCTURE AND EXPRESSION, 2000, 1494 (1-2) :91-103
[29]   Beneficial Effect of Chloroquine and Amodiaquine on Type 1 Diabetic Tubulopathy by Attenuating Mitochondrial Nox4 and Endoplasmic Reticulum Stress [J].
Kang, Jun Mo ;
Lee, Hyun-Seob ;
Kim, Junghyun ;
Yang, Dong Ho ;
Jeong, Hye Yun ;
Lee, Yu Ho ;
Kim, Dong-Jin ;
Park, Seon Hwa ;
Sung, MinJi ;
Kim, Jaehee ;
An, Hyun-Ju ;
Lee, Sang Ho ;
Lee, So-Young .
JOURNAL OF KOREAN MEDICAL SCIENCE, 2020, 35 (36)
[30]   Mitochondrial fragmentation in neurodegeneration [J].
Knott, Andrew B. ;
Perkins, Guy ;
Schwarzenbacher, Robert ;
Bossy-Wetzel, Ella .
NATURE REVIEWS NEUROSCIENCE, 2008, 9 (07) :505-518