4.8 Article

PLK1 (polo like kinase 1) inhibits MTOR complex 1 and promotes autophagy

期刊

AUTOPHAGY
卷 13, 期 3, 页码 486-505

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/15548627.2016.1263781

关键词

amino acid; BI2536; insulin; interphase; lysosome; MTOR; MTORC1; PLK1; RPTOR; starvation

资金

  1. Schlieben-Lange-Programm
  2. German Research Foundation [EXC 294, CRC746, CRC850, GSC-4]
  3. DFG Research Training Group RTG 1104
  4. BMBF Gerontosys II-NephAge [031 5896A]
  5. BMBF e:Med Young investigator network GlioPATH [01ZX1402B]
  6. BMBF e:Med Demonstrator project MAPTor-NET [31P9013A]
  7. Rosalind Franklin Fellowship (University of Groningen)
  8. Ubbo Emmius Funds and Stichting Michelle
  9. NIH/NIA [AG038664, AG039756]
  10. Glenn Foundation for Aging Research fellowship
  11. Deutsche Forschungsgemeinschaft [FOR1352, TRR130]
  12. Excellence Initiative of the German Federal & State Governments [EXC 294 BIOSS]

向作者/读者索取更多资源

Mechanistic target of rapamycin complex 1 (MTORC1) and polo like kinase 1 (PLK1) are major drivers of cancer cell growth and proliferation, and inhibitors of both protein kinases are currently being investigated in clinical studies. To date, MTORC1's and PLK1's functions are mostly studied separately, and reports on their mutual crosstalk are scarce. Here, we identify PLK1 as a physical MTORC1 interactor in human cancer cells. PLK1 inhibition enhances MTORC1 activity under nutrient sufficiency and in starved cells, and PLK1 directly phosphorylates the MTORC1 component RPTOR/RAPTOR in vitro. PLK1 and MTORC1 reside together at lysosomes, the subcellular site where MTORC1 is active. Consistent with an inhibitory role of PLK1 toward MTORC1, PLK1 overexpression inhibits lysosomal association of the PLK1-MTORC1 complex, whereas PLK1 inhibition promotes lysosomal localization of MTOR. PLK1-MTORC1 binding is enhanced by amino acid starvation, a condition known to increase autophagy. MTORC1 inhibition is an important step in autophagy activation. Consistently, PLK1 inhibition mitigates autophagy in cancer cells both under nutrient starvation and sufficiency, and a role of PLK1 in autophagy is also observed in the invertebrate model organism Caenorhabditis elegans. In summary, PLK1 inhibits MTORC1 and thereby positively contributes to autophagy. Since autophagy is increasingly recognized to contribute to tumor cell survival and growth, we propose that cautious monitoring of MTORC1 and autophagy readouts in clinical trials with PLK1 inhibitors is needed to develop strategies for optimized (combinatorial) cancer therapies targeting MTORC1, PLK1, and autophagy.

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