4.7 Article

Transmembrane and Coiled-Coil Domain 1 Impairs the AKT Signaling Pathway in Urinary Bladder Urothelial Carcinoma: A Characterization of a Tumor Suppressor

Journal

CLINICAL CANCER RESEARCH
Volume 23, Issue 24, Pages 7650-7663

Publisher

AMER ASSOC CANCER RESEARCH
DOI: 10.1158/1078-0432.CCR-17-0002

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Funding

  1. Ministry of Health and Welfare [MOHW104-TDU-M-212-133004]
  2. Ministry of Science and Technology [MOST104-2314-B-037-050-MY3]
  3. Kaohsiung Medical University Aim for the Top Universities [KMU-TP105G00, KMU-TP105G01, KMU-TP105G02]
  4. Center for Infectious Disease and Cancer Research [KMU-TP105E24]
  5. Kaohsiung Medical University Research Foundation [KMUOR105]
  6. NSYSU-KMU Joint Research Project [NSYSUKMU 106-P008]
  7. Kaohsiung Medical University Hospital [KMUH104-4R44, KMUH105-5R47]
  8. health and welfare surcharge on tobacco products, Ministry of Health and Welfare [MOHW106-TDU-B-212-144007]
  9. Taiwan Protein Project [MOST105-0210-01-12-01, MOST106-0210-01-15-04]
  10. [MOST105-2314-B-110 -002 -MY2]

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Purpose: Urinary bladder urothelial carcinoma (UBUC) is a common malignant disease in developed countries. Cell-cycle dysregulation resulting in uncontrolled cell proliferation has been associated with UBUC development. This study aimed to explore the roles of TMCO1 in UBUCs. Experimental Design: Data mining, branched DNA assay, immunohistochemistry, xenograft, cell culture, quantitative RTPCR, immunoblotting, stable and transient transfection, lentivirus production and stable knockdown, cell-cycle, cell viability and proliferation, soft-agar, wound-healing, transwell migration and invasion, coimmunoprecipitation, immunocytochemistry, and AKT serine/threonine kinase (AKT) activity assays and site-directed mutagenesis were used to study TMCO1 involvement in vivo and in vitro. Results: Data mining identified that the TMCO1 transcript was downregulated during the progression of UBUCs. In distinct UBUC-derived cell lines, changes in TMCO1 levels altered the cell-cycle distribution, cell viability, cell proliferation, and colony formation and modulated the AKT pathway. TMCO1 recruited the PH domain and leucine-rich repeat protein phosphatase 2 (PHLPP2) to dephosphorylate pAKT1(serine 473) (S473). Mutagenesis at S60 of the TMCO1 protein released TMCO1-induced cell-cycle arrest and restored the AKT pathway in BFTC905 cells. Stable TMCO1 (wild-type) overexpression suppressed, whereas T33A and S60A mutants recovered, tumor size in xenograft mice. Conclusions: Clinical associations, xenograft mice, and in vitro indications provide solid evidence that the TMCO1 gene is a novel tumor suppressor in UBUCs. TMCO1 dysregulates cell-cycle progression via suppression of the AKT pathway, and S60 of the TMCO1 protein is crucial for its tumor-suppressor roles. (C) 2017 AACR.

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