GPCRs profiling and identification of GPR110 as a potential new target in HER2+ breast cancer

Purpose G protein-coupled receptors (GPCRs) represent the largest family of druggable targets in human genome. Although several GPCRs can cross-talk with the human epidermal growth factor receptors (HERs), the expression and function of most GPCRs remain unknown in HER2+ breast cancer (BC). In this...

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Veröffentlicht in:Breast cancer research and treatment 2018-07, Vol.170 (2), p.279-292
Hauptverfasser: Bhat, Raksha R., Yadav, Puja, Sahay, Debashish, Bhargava, Dharmendra K., Creighton, Chad J., Yazdanfard, Sahar, Al-rawi, Ahmed, Yadav, Vikas, Qin, Lanfang, Nanda, Sarmistha, Sethunath, Vidyalakshmi, Fu, Xiaoyong, De Angelis, Carmine, Narkar, Vihang A., Osborne, C. Kent, Schiff, Rachel, Trivedi, Meghana V.
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Sprache:eng
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Zusammenfassung:Purpose G protein-coupled receptors (GPCRs) represent the largest family of druggable targets in human genome. Although several GPCRs can cross-talk with the human epidermal growth factor receptors (HERs), the expression and function of most GPCRs remain unknown in HER2+ breast cancer (BC). In this study, we aimed to evaluate gene expression of GPCRs in tumorigenic or anti-HER2 drug-resistant cells and to understand the potential role of candidate GPCRs in HER2+ BC. Methods Gene expression of 352 GPCRs was profiled in Aldeflur+ tumorigenic versus Aldeflur− population and anti-HER2 therapy-resistant derivatives versus parental cells of HER2+ BT474 cells. The GPCR candidates were confirmed in 7 additional HER2+ BC cell line models and publicly available patient dataset. Anchorage-dependent and anchorage-independent cell growth, mammosphere formation, and migration/invasion were evaluated upon GPR110 knockdown by siRNA in BT474 and SKBR3 parental and lapatinib+ trastuzumab-resistant (LTR) cells. Results Adhesion and class A GPCRs were overexpressed in Aldeflur+ and anti-HER2 therapy-resistant population of BT474 cells, respectively. GPR110 was the only GPCR overexpressed in Aldeflur+ and anti-HER2 therapy-resistant population in BT474, SKBR3, HCC1569, MDA-MB-361, AU565, and/or HCC202 cells and in HER2+ BC subtype in patient tumors. Using BT474 and SKBR3 parental and LTR cells, we found that GPR110 knockdown significantly reduced anchorage-dependent/independent cell growth as well as migration/invasion of parental and LTR cells and mammosphere formation in LTR derivatives and not in parental cells. Conclusion Our data suggest a potential role of GPR110 in tumorigenicity and in tumor cell dissemination in HER2+ BC.
ISSN:0167-6806
1573-7217
DOI:10.1007/s10549-018-4751-9