top of page
< Back

Targeting ASCT2-mediated glutamine uptake blocks prostate cancer growth and tumour development

Wang, Qian; Hardie, Rae-Anne; Hoy, Andrew J.; van Geldermalsen, Michelle; Gao, Dadi; Fazli, Ladan; Sadowski, Martin C.; Balaban, Seher; Schreuder, Mark; Nagarajah, Rajini; Wong, Justin J.-L.; Metierre, Cynthia; Pinello, Natalia; Otte, Nicholas J.; Lehman, Melanie L.; Gleave, Martin; Nelson, Colleen C.; Bailey, Charles G.; Ritchie, William; Rasko, John E. J.; Holst, Jeff

Date Published:

Publication:

DOI:

URL:

PMID:

Extra Links:

2015-07

10.1002/path.4518

PMID: 25693838 PMCID: PMC4973854

Abstract:

Glutamine is conditionally essential in cancer cells, being utilized as a carbon and nitrogen source for macromolecule production, as well as for anaplerotic reactions fuelling the tricarboxylic acid (TCA) cycle. In this study, we demonstrated that the glutamine transporter ASCT2 (SLC1A5) is highly expressed in prostate cancer patient samples. Using LNCaP and PC-3 prostate cancer cell lines, we showed that chemical or shRNA-mediated inhibition of ASCT2 function in vitro decreases glutamine uptake, cell cycle progression through E2F transcription factors, mTORC1 pathway activation and cell growth. Chemical inhibition also reduces basal oxygen consumption and fatty acid synthesis, showing that downstream metabolic function is reliant on ASCT2-mediated glutamine uptake. Furthermore, shRNA knockdown of ASCT2 in PC-3 cell xenografts significantly inhibits tumour growth and metastasis in vivo, associated with the down-regulation of E2F cell cycle pathway proteins. In conclusion, ASCT2-mediated glutamine uptake is essential for multiple pathways regulating the cell cycle and cell growth, and is therefore a putative therapeutic target in prostate cancer.

Automatic Tags

Humans; Male; Oxygen; Mice; Fatty Acids; prostate cancer; Cell Proliferation; Mechanistic Target of Rapamycin Complex 1; Multiprotein Complexes; TOR Serine-Threonine Kinases; Biological Transport; Cell Line, Tumor; Mice, Nude; Down-Regulation; Prostatic Neoplasms; Cell Cycle; RNA, Small Interfering; Gene Expression Regulation, Neoplastic; Neoplasm Metastasis; Heterografts; Gene Knockdown Techniques; Amino Acid Transport System ASC; ASCT2; cell cycle; Minor Histocompatibility Antigens; SLC1A5

  • Facebook
  • Twitter
  • Instagram
  • Reddit's r/Ketoscience
bottom of page