Literature DB >> 31548394

Phosphorylation of DEPDC5, a component of the GATOR1 complex, releases inhibition of mTORC1 and promotes tumor growth.

Sathish K R Padi1, Neha Singh1, Jeremiah J Bearss2, Virginie Olive2, Jin H Song3, Marina Cardó-Vila4, Andrew S Kraft5,2, Koichi Okumura6.   

Abstract

The Pim and AKT serine/threonine protein kinases are implicated as drivers of cancer. Their regulation of tumor growth is closely tied to the ability of these enzymes to mainly stimulate protein synthesis by activating mTORC1 (mammalian target of rapamycin complex 1) signaling, although the exact mechanism is not completely understood. mTORC1 activity is normally suppressed by amino acid starvation through a cascade of multiple regulatory protein complexes, e.g., GATOR1, GATOR2, and KICSTOR, that reduce the activity of Rag GTPases. Bioinformatic analysis revealed that DEPDC5 (DEP domain containing protein 5), a component of GATOR1 complex, contains Pim and AKT protein kinase phosphorylation consensus sequences. DEPDC5 phosphorylation by Pim and AKT kinases was confirmed in cancer cells through the use of phospho-specific antibodies and transfection of phospho-inactive DEPDC5 mutants. Consistent with these findings, during amino acid starvation the elevated expression of Pim1 overcame the amino acid inhibitory protein cascade and activated mTORC1. In contrast, the knockout of DEPDC5 partially blocked the ability of small molecule inhibitors against Pim and AKT kinases both singly and in combination to suppress tumor growth and mTORC1 activity in vitro and in vivo. In animal experiments knocking in a glutamic acid (S1530E) in DEPDC5, a phospho mimic, in tumor cells induced a significant level of resistance to Pim and the combination of Pim and AKT inhibitors. Our results indicate a phosphorylation-dependent regulatory mechanism targeting DEPDC5 through which Pim1 and AKT act as upstream effectors of mTORC1 to facilitate proliferation and survival of cancer cells.

Entities:  

Keywords:  AKT kinase; DEPDC5; GATOR1; Pim kinase; mTORC1

Year:  2019        PMID: 31548394      PMCID: PMC6789643          DOI: 10.1073/pnas.1904774116

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  45 in total

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Authors:  Aldo Scarpa; David K Chang; Katia Nones; Vincenzo Corbo; Ann-Marie Patch; Peter Bailey; Rita T Lawlor; Amber L Johns; David K Miller; Andrea Mafficini; Borislav Rusev; Maria Scardoni; Davide Antonello; Stefano Barbi; Katarzyna O Sikora; Sara Cingarlini; Caterina Vicentini; Skye McKay; Michael C J Quinn; Timothy J C Bruxner; Angelika N Christ; Ivon Harliwong; Senel Idrisoglu; Suzanne McLean; Craig Nourse; Ehsan Nourbakhsh; Peter J Wilson; Matthew J Anderson; J Lynn Fink; Felicity Newell; Nick Waddell; Oliver Holmes; Stephen H Kazakoff; Conrad Leonard; Scott Wood; Qinying Xu; Shivashankar Hiriyur Nagaraj; Eliana Amato; Irene Dalai; Samantha Bersani; Ivana Cataldo; Angelo P Dei Tos; Paola Capelli; Maria Vittoria Davì; Luca Landoni; Anna Malpaga; Marco Miotto; Vicki L J Whitehall; Barbara A Leggett; Janelle L Harris; Jonathan Harris; Marc D Jones; Jeremy Humphris; Lorraine A Chantrill; Venessa Chin; Adnan M Nagrial; Marina Pajic; Christopher J Scarlett; Andreia Pinho; Ilse Rooman; Christopher Toon; Jianmin Wu; Mark Pinese; Mark Cowley; Andrew Barbour; Amanda Mawson; Emily S Humphrey; Emily K Colvin; Angela Chou; Jessica A Lovell; Nigel B Jamieson; Fraser Duthie; Marie-Claude Gingras; William E Fisher; Rebecca A Dagg; Loretta M S Lau; Michael Lee; Hilda A Pickett; Roger R Reddel; Jaswinder S Samra; James G Kench; Neil D Merrett; Krishna Epari; Nam Q Nguyen; Nikolajs Zeps; Massimo Falconi; Michele Simbolo; Giovanni Butturini; George Van Buren; Stefano Partelli; Matteo Fassan; Kum Kum Khanna; Anthony J Gill; David A Wheeler; Richard A Gibbs; Elizabeth A Musgrove; Claudio Bassi; Giampaolo Tortora; Paolo Pederzoli; John V Pearson; Nicola Waddell; Andrew V Biankin; Sean M Grimmond
Journal:  Nature       Date:  2017-02-15       Impact factor: 49.962

Review 2.  PIM kinase (and Akt) biology and signaling in tumors.

Authors:  Noel A Warfel; Andrew S Kraft
Journal:  Pharmacol Ther       Date:  2015-03-05       Impact factor: 12.310

3.  Preclinical pharmacology of AZD5363, an inhibitor of AKT: pharmacodynamics, antitumor activity, and correlation of monotherapy activity with genetic background.

Authors:  Barry R Davies; Hannah Greenwood; Phillippa Dudley; Claire Crafter; De-Hua Yu; Jingchuan Zhang; Jing Li; Beirong Gao; Qunsheng Ji; Juliana Maynard; Sally-Ann Ricketts; Darren Cross; Sabina Cosulich; Christine C Chresta; Ken Page; James Yates; Clare Lane; Rebecca Watson; Richard Luke; Donald Ogilvie; Martin Pass
Journal:  Mol Cancer Ther       Date:  2012-01-31       Impact factor: 6.261

4.  Prostatic neoplasia in transgenic mice with prostate-directed overexpression of the c-myc oncoprotein.

Authors:  X Zhang; C Lee; P Y Ng; M Rubin; A Shabsigh; R Buttyan
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5.  The Pim-1 protein kinase is an important regulator of MET receptor tyrosine kinase levels and signaling.

Authors:  Bo Cen; Ying Xiong; Jin H Song; Sandeep Mahajan; Rachel DuPont; Kristen McEachern; Daniel J DeAngelo; Jorge E Cortes; Mark D Minden; Allen Ebens; Alice Mims; Amanda C LaRue; Andrew S Kraft
Journal:  Mol Cell Biol       Date:  2014-04-28       Impact factor: 4.272

6.  A Tumor suppressor complex with GAP activity for the Rag GTPases that signal amino acid sufficiency to mTORC1.

Authors:  Liron Bar-Peled; Lynne Chantranupong; Andrew D Cherniack; Walter W Chen; Kathleen A Ottina; Brian C Grabiner; Eric D Spear; Scott L Carter; Matthew Meyerson; David M Sabatini
Journal:  Science       Date:  2013-05-31       Impact factor: 47.728

7.  Targeting the PIM protein kinases for the treatment of a T-cell acute lymphoblastic leukemia subset.

Authors:  Sathish K R Padi; Libia A Luevano; Ningfei An; Ritu Pandey; Neha Singh; Jin H Song; Jon C Aster; Xue-Zhong Yu; Shikhar Mehrotra; Andrew S Kraft
Journal:  Oncotarget       Date:  2017-05-02

8.  KICSTOR recruits GATOR1 to the lysosome and is necessary for nutrients to regulate mTORC1.

Authors:  Rachel L Wolfson; Lynne Chantranupong; Gregory A Wyant; Xin Gu; Jose M Orozco; Kuang Shen; Kendall J Condon; Sabrina Petri; Jibril Kedir; Sonia M Scaria; Monther Abu-Remaileh; Wayne N Frankel; David M Sabatini
Journal:  Nature       Date:  2017-02-15       Impact factor: 49.962

9.  Structural basis for Ragulator functioning as a scaffold in membrane-anchoring of Rag GTPases and mTORC1.

Authors:  Tianlong Zhang; Rong Wang; Zhijing Wang; Xiangxiang Wang; Fang Wang; Jianping Ding
Journal:  Nat Commun       Date:  2017-11-09       Impact factor: 14.919

10.  Ragulator and GATOR1 complexes promote fission yeast growth by attenuating TOR complex 1 through Rag GTPases.

Authors:  Kim Hou Chia; Tomoyuki Fukuda; Fajar Sofyantoro; Takato Matsuda; Takamitsu Amai; Kazuhiro Shiozaki
Journal:  Elife       Date:  2017-12-04       Impact factor: 8.140

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  7 in total

Review 1.  A systematic review on active sites and functions of PIM-1 protein.

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Review 2.  Regulation of Body Size and Growth Control.

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3.  EDC3 phosphorylation regulates growth and invasion through controlling P-body formation and dynamics.

Authors:  Jeremiah J Bearss; Sathish Kr Padi; Neha Singh; Marina Cardo-Vila; Jin H Song; Ghassan Mouneimne; Nikita Fernandes; Yang Li; Matthew R Harter; Jaime Mc Gard; Anne E Cress; Wolfgang Peti; Andrew Dl Nelson; J Ross Buchan; Andrew S Kraft; Koichi Okumura
Journal:  EMBO Rep       Date:  2021-02-15       Impact factor: 8.807

Review 4.  The Roles of Post-Translational Modifications on mTOR Signaling.

Authors:  Shasha Yin; Liu Liu; Wenjian Gan
Journal:  Int J Mol Sci       Date:  2021-02-11       Impact factor: 5.923

Review 5.  SEA and GATOR 10 Years Later.

Authors:  Yahir A Loissell-Baltazar; Svetlana Dokudovskaya
Journal:  Cells       Date:  2021-10-08       Impact factor: 6.600

Review 6.  Structural Insights into TOR Signaling.

Authors:  Lucas Tafur; Jennifer Kefauver; Robbie Loewith
Journal:  Genes (Basel)       Date:  2020-08-04       Impact factor: 4.096

7.  PIM protein kinases regulate the level of the long noncoding RNA H19 to control stem cell gene transcription and modulate tumor growth.

Authors:  Neha Singh; Sathish K R Padi; Jeremiah J Bearss; Ritu Pandey; Koichi Okumura; Himisha Beltran; Jin H Song; Andrew S Kraft; Virginie Olive
Journal:  Mol Oncol       Date:  2020-04-01       Impact factor: 6.603

  7 in total

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