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The role of PIP5K1 alpha/pAKT and targeted inhibition of growth of subtypes of breast cancer using PIP5K1 alpha inhibitor
- Source :
- Sarwar, M, Syed Khaja, A S, Aleskandarany, M, Karlsson, R, Althobiti, M, Ødum, N, Mongan, N P, Dizeyi, N, Johnson, H, Green, A R, Ellis, I O, Rakha, E A & Persson, J L 2019, ' The role of PIP5K1α/pAKT and targeted inhibition of growth of subtypes of breast cancer using PIP5K1α inhibitor ', Oncogene, vol. 38, pp. 375–389 . https://doi.org/10.1038/s41388-018-0438-2, Oncogene
- Publication Year :
- 2019
- Publisher :
- Umeå universitet, Institutionen för molekylärbiologi (Medicinska fakulteten), 2019.
-
Abstract
- Despite recent improvement in adjuvant therapies, triple-negative, and ER+ subtypes of breast cancer (BC) with metastatic potentials remain the leading cause of BC-related deaths. We investigated the role of phosphatidylinositol-4-phosphate 5-kinase alpha (PIP5Kα), a key upstream factor of PI3K/AKT, and the therapeutic effect of PIP5Kα inhibitor on subtypes of BC. The clinical importance of PIP5K1α and its association with survivals were analyzed using three BC cohorts from Nottingham (n = 913), KM plotter (n = 112) and TCGA (n = 817). Targeted overexpression or knockdown of PIP5K1α were introduced into BC cell lines. The effects of PIP5K1α and its inhibitor on growth and invasion of BC were confirmed by using in vitro assays including proliferation, migration, apoptosis and luciferase reporter assays and in vivo xenograft mouse models. All statistical tests were two-sided. PIP5K1α was associated with poor patient outcome in triple-negative BC (for PIP5K1α protein, p = 0.011 and for mRNA expression, p = 0.028, log-rank test). 29% of triple-negative BC had PIP5K1A gene amplification. Elevated level of PIP5K1α increased expression of pSer-473 AKT (p < 0.001) and invasiveness of triple-negative MDA-MB-231 cells (p < 0.001). Conversely, inhibition of PIP5K1α using its inhibitor ISA-2011B, or via knockdown suppressed growth and invasiveness of MDA-MB-231 xenografts (mean vehicle-treated controls = 2160 mm3, and mean ISA-2011B-treated = 600 mm3, p < 0.001). ISA-2011B-treatment reduced expression of pSer-473 AKT (p < 0.001) and its downstream effectors including cyclin D1, VEGF and its receptors, VEGFR1 and VEGFR2 (p < 0.001) in xenograft tumors. In ER+ cancer cells, PIP5K1α acted on pSer-473 AKT, and was in complexes with VEGFR2, serving as co-factor of ER-alpha to regulate activities of target genes including cyclin D1 and CDK1. Our study suggests that our developed PIP5K1α inhibitor has a great potential on refining targeted therapeutics for treatment of triple-negative and ER+ BC with abnormal PI3K/AKT pathways.
- Subjects :
- 0301 basic medicine
Cancer Research
Indoles
Apoptosis
Triple Negative Breast Neoplasms
Kaplan-Meier Estimate
Mice
Phosphatidylinositol 3-Kinases
0302 clinical medicine
Molecular Targeted Therapy
Receptor
Gene knockdown
Estradiol
Research Support, Non-U.S. Gov't
Neoplasm Proteins
Phosphotransferases (Alcohol Group Acceptor)
030220 oncology & carcinogenesis
Female
RNA Interference
Signal Transduction
DNA Replication
Neoplasms, Hormone-Dependent
Recombinant Fusion Proteins
Antineoplastic Agents
Breast Neoplasms
Diketopiperazines
Biology
Article
03 medical and health sciences
Cyclin D1
Breast cancer
Cell Line, Tumor
Genetics
medicine
Journal Article
Animals
Humans
Protein Kinase Inhibitors
Molecular Biology
Protein kinase B
PI3K/AKT/mTOR pathway
Cell Proliferation
Cyclin-dependent kinase 1
Cancer och onkologi
Estrogens
Isoquinolines
medicine.disease
Xenograft Model Antitumor Assays
030104 developmental biology
Cancer and Oncology
Cancer cell
Cancer research
Proto-Oncogene Proteins c-akt
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Sarwar, M, Syed Khaja, A S, Aleskandarany, M, Karlsson, R, Althobiti, M, Ødum, N, Mongan, N P, Dizeyi, N, Johnson, H, Green, A R, Ellis, I O, Rakha, E A & Persson, J L 2019, ' The role of PIP5K1α/pAKT and targeted inhibition of growth of subtypes of breast cancer using PIP5K1α inhibitor ', Oncogene, vol. 38, pp. 375–389 . https://doi.org/10.1038/s41388-018-0438-2, Oncogene
- Accession number :
- edsair.doi.dedup.....8e55088e77885bc032e5f46cdd7a2f31
- Full Text :
- https://doi.org/10.1038/s41388-018-0438-2