The crosstalk between MYC and mTORC1 during osteoclastogenesis

被引:8
|
作者
Bae, Seyeon [1 ,2 ]
Oh, Brian [1 ]
Tsai, Jefferson [1 ]
Park, Peter Sang Uk [1 ]
Greenblatt, Matthew Blake [3 ]
Giannopoulou, Eugenia G. [1 ,4 ]
Park-Min, Kyung-Hyun [1 ,2 ,5 ]
机构
[1] Hosp Special Surg, David Z Rosensweig Genom Res Ctr, Arthrit & Tissue Degenerat Program, New York, NY 10021 USA
[2] Weill Cornell Med Coll, Dept Med, New York, NY 10021 USA
[3] Weill Cornell Med Coll, Dept Pathol, New York, NY USA
[4] City Univ New York, New York City Coll Technol, Biol Sci Dept, Brooklyn, NY USA
[5] Weill Cornell Grad Sch Med Sci, BCMB Allied Program, New York, NY 10065 USA
基金
美国国家卫生研究院;
关键词
MYC (c-myc); osteoclast (OC); mTORC1 (mechanistic target of rapamycin complex 1); bone resorption; UNFOLDED PROTEIN RESPONSE; TUBEROUS SCLEROSIS COMPLEX; MAMMALIAN TARGET; BONE-RESORPTION; CELL-SURVIVAL; C-MYC; DIFFERENTIATION; RAPAMYCIN; GADD34; INHIBITION;
D O I
10.3389/fcell.2022.920683
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Osteoclasts are bone-resorbing cells that undergo extensive changes in morphology throughout their differentiation. Altered osteoclast differentiation and activity lead to changes in pathological bone resorption. The mammalian target of rapamycin (mTOR) is a kinase, and aberrant mTOR complex 1 (mTORC1) signaling is associated with altered bone homeostasis. The activation of mTORC1 is biphasically regulated during osteoclastogenesis; however, the mechanism behind mTORC1-mediated regulation of osteoclastogenesis and bone resorption is incompletely understood. Here, we found that MYC coordinates the dynamic regulation of mTORC1 activation during osteoclastogenesis. MYC-deficiency blocked the early activation of mTORC1 and also reversed the decreased activity of mTORC1 at the late stage of osteoclastogenesis. The suppression of mTORC1 activity by rapamycin in mature osteoclasts enhances bone resorption activity despite the indispensable role of high mTORC1 activation in osteoclast formation in both mouse and human cells. Mechanistically, MYC induces Growth arrest and DNA damage-inducible protein (GADD34) expression and suppresses mTORC1 activity at the late phase of osteoclastogenesis. Taken together, our findings identify a MYC-GADD34 axis as an upstream regulator of dynamic mTORC1 activation in osteoclastogenesis and highlight the interplay between MYC and mTORC1 pathways in determining osteoclast activity.
引用
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页数:12
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