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Rapid Mitogenic Regulation of the mTORC1 Inhibitor, DEPTOR, by Phosphatidic Acid

Authors
Yoon, Mee-SupRosenberger, Christina L.Wu, CongNga TruongSweedler, Jonathan V.Chen, Jie
Issue Date
7-May-2015
Publisher
CELL PRESS
Citation
MOLECULAR CELL, v.58, no.3, pp.549 - 556
Journal Title
MOLECULAR CELL
Volume
58
Number
3
Start Page
549
End Page
556
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/10505
DOI
10.1016/j.molcel.2015.03.028
ISSN
1097-2765
Abstract
The mammalian target of rapamycin complex 1 (mTORC1) is regulated, in part, by the endogenous inhibitor DEPTOR. However, the mechanism of DEPTOR regulation with regard to rapid mTORC1 activation remains unknown. We report that DEPTOR is rapidly and temporarily dissociated from mTORC1 upon mitogenic stimulation, suggesting a mechanism underlying acute mTORC1 activation. This mitogen-stimulated DEPTOR dissociation is blocked by inhibition or depletion of the mTORC1 regulator, phospholipase D (PLD), and recapitulated with the addition of the PLD product phosphatidic acid (PA). Our mass spectrometry analysis has independently identified DEPTOR as an mTOR binding partner dissociated by PA. Interestingly, only PA species with unsaturated fatty acid chains, such as those produced by PLD, are capable of displacing DEPTOR and activating mTORC1, with high affinity for the FRB domain of mTOR. Our findings reveal a mechanism of mTOR regulation and provide a molecular explanation for the exquisite specificity of PA function.
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