TY - JOUR
T1 - microRNA-181a Downregulates Deptor for TGFβ-induced Glomerular Mesangial Cell Hypertrophy and Matrix Protein Expression
AU - Maity, Soumya
AU - Bera, Amit
AU - Ghosh-Choudhury, Nandini
AU - Das, Falguni
AU - Kasinath, Balakuntalam S.
AU - Choudhury, Goutam Ghosh
N1 - Funding Information:
This work was supported by the United States Department of Veterans Affairs Biomedical Laboratory Research and Development Service Merit Review Award 2 I01 BX000926 and by the NIH RO1 DK 50190 to GGC. GGC is recipient of the Research Career Scientist Award IK6BX003611 from the Department of Veterans Affairs Biomedical Laboratory Research and Development Service. BSK is supported by the VA Merit Review grant I01 BX 001340 . NGC is recipient of a research grant from the San Antonio Area Foundation. Appendix A
Publisher Copyright:
© 2018
PY - 2018/3/1
Y1 - 2018/3/1
N2 - TGFβ contributes to mesangial cell hypertrophy and matrix protein increase in various kidney diseases including diabetic nephropathy. Deptor is an mTOR-interacting protein and suppresses mTORC1 and mTORC2 activities. We have recently shown that TGFβ-induced inhibition of deptor increases the mTOR activity. The mechanism by which TGFβ regulates deptor expression is not known. Here we identify deptor as a target of the microRNA-181a. We show that in mesangial cells, TGFβ increases the expression of miR-181a to downregulate deptor. Decrease in deptor augments mTORC2 activity, resulting in phosphorylation/activation of Akt kinase. Akt promotes inactivating phosphorylation of PRAS40 and tuberin, leading to stimulation of mTORC1. miR-181a-mimic increased mTORC1 and C2 activities, while anti-miR-181a inhibited them. mTORC1 controls protein synthesis via phosphorylation of translation initiation and elongation suppressors 4EBP-1 and eEF2 kinase. TGFβ-stimulated miR-181a increased the phosphorylation of 4EBP-1 and eEF2 kinase, resulting in their inactivation. miR-181a-dependent inactivation of eEF2 kinase caused dephosphorylation of eEF2. Consequently, miR-181a-mimic increased protein synthesis and hypertrophy of mesangial cells similar to TGFβ. Anti-miR-181a blocked these events in a deptor-dependent manner. Finally, TGFβ-miR-181a-driven deptor downregulation increased the expression of fibronectin. Our results identify a novel mechanism involving miR-181a-driven deptor downregulation, which contributes to mesangial cell pathologies in renal complications.
AB - TGFβ contributes to mesangial cell hypertrophy and matrix protein increase in various kidney diseases including diabetic nephropathy. Deptor is an mTOR-interacting protein and suppresses mTORC1 and mTORC2 activities. We have recently shown that TGFβ-induced inhibition of deptor increases the mTOR activity. The mechanism by which TGFβ regulates deptor expression is not known. Here we identify deptor as a target of the microRNA-181a. We show that in mesangial cells, TGFβ increases the expression of miR-181a to downregulate deptor. Decrease in deptor augments mTORC2 activity, resulting in phosphorylation/activation of Akt kinase. Akt promotes inactivating phosphorylation of PRAS40 and tuberin, leading to stimulation of mTORC1. miR-181a-mimic increased mTORC1 and C2 activities, while anti-miR-181a inhibited them. mTORC1 controls protein synthesis via phosphorylation of translation initiation and elongation suppressors 4EBP-1 and eEF2 kinase. TGFβ-stimulated miR-181a increased the phosphorylation of 4EBP-1 and eEF2 kinase, resulting in their inactivation. miR-181a-dependent inactivation of eEF2 kinase caused dephosphorylation of eEF2. Consequently, miR-181a-mimic increased protein synthesis and hypertrophy of mesangial cells similar to TGFβ. Anti-miR-181a blocked these events in a deptor-dependent manner. Finally, TGFβ-miR-181a-driven deptor downregulation increased the expression of fibronectin. Our results identify a novel mechanism involving miR-181a-driven deptor downregulation, which contributes to mesangial cell pathologies in renal complications.
KW - Deptor
KW - Glomerulosclerosis
KW - mTORC1
KW - miR-181a
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U2 - 10.1016/j.yexcr.2018.01.021
DO - 10.1016/j.yexcr.2018.01.021
M3 - Article
C2 - 29397070
AN - SCOPUS:85041558759
SN - 0014-4827
VL - 364
SP - 5
EP - 15
JO - Experimental Cell Research
JF - Experimental Cell Research
IS - 1
ER -