Signaling via G proteins mediates tumorigenic effects of GPR87

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Signaling via G proteins mediates tumorigenic effects of GPR87. / Arfelt, Kristine Niss; Fares, Suzan; Sparre-Ulrich, Alexander H.; Hjorto, Gertrud M.; Gasbjerg, Laerke S.; Molleskov-Jensen, Ann-Sofie; Benned-Jensen, Tau; Rosenkilde, Mette M.

In: Cellular Signalling, Vol. 30, 01.2017, p. 9-18.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Arfelt, KN, Fares, S, Sparre-Ulrich, AH, Hjorto, GM, Gasbjerg, LS, Molleskov-Jensen, A-S, Benned-Jensen, T & Rosenkilde, MM 2017, 'Signaling via G proteins mediates tumorigenic effects of GPR87', Cellular Signalling, vol. 30, pp. 9-18. https://doi.org/10.1016/j.cellsig.2016.11.009

APA

Arfelt, K. N., Fares, S., Sparre-Ulrich, A. H., Hjorto, G. M., Gasbjerg, L. S., Molleskov-Jensen, A-S., Benned-Jensen, T., & Rosenkilde, M. M. (2017). Signaling via G proteins mediates tumorigenic effects of GPR87. Cellular Signalling, 30, 9-18. https://doi.org/10.1016/j.cellsig.2016.11.009

Vancouver

Arfelt KN, Fares S, Sparre-Ulrich AH, Hjorto GM, Gasbjerg LS, Molleskov-Jensen A-S et al. Signaling via G proteins mediates tumorigenic effects of GPR87. Cellular Signalling. 2017 Jan;30:9-18. https://doi.org/10.1016/j.cellsig.2016.11.009

Author

Arfelt, Kristine Niss ; Fares, Suzan ; Sparre-Ulrich, Alexander H. ; Hjorto, Gertrud M. ; Gasbjerg, Laerke S. ; Molleskov-Jensen, Ann-Sofie ; Benned-Jensen, Tau ; Rosenkilde, Mette M. / Signaling via G proteins mediates tumorigenic effects of GPR87. In: Cellular Signalling. 2017 ; Vol. 30. pp. 9-18.

Bibtex

@article{820fdf4584fa4f939e59e680d16a1709,
title = "Signaling via G proteins mediates tumorigenic effects of GPR87",
abstract = "G protein-coupled receptors (GPCRs) constitute a large protein family of seven transmembrane (7TM) spanning proteins that regulate multiple physiological functions. GPR87 is overexpressed in several cancers and plays a role in tumor cell survival. Here, the basal activity of GPR87 was investigated in transiently transfected HEK293 cells, revealing ligand-independent coupling to Gαi, Gαq and Gα12/13. Furthermore, GPR87 showed a ligand-independent G protein-dependent activation of the downstream transcription factors CREB, NFκB, NFAT and SRE. In tetracycline-induced Flp-In T-Rex-293 cells, GPR87 induced cell clustering presumably through Gα12/13 coupling. In a foci formation assay using retrovirally transduced NIH3T3 cells, GPR87 showed a strong in vitro transforming potential, which correlated to the in vivo tumor induction in nude mice. Importantly, we demonstrate that the transforming potential of GPR87 was correlated to the receptor signaling, as the signaling-impaired mutant R139A (Arg in the conserved “DRY”-motif at the bottom of transmembrane helix 3 of GPR87 substituted to Ala) showed a lower in vitro cell transformation potential. Furthermore, R139A lost the ability to induce cell clustering. In summary, we show that GPR87 is active through several signaling pathways and that the signaling activity is linked to the receptor-induced cell transformation and clustering. The robust surface expression of GPR87 and general high druggability of GPCRs make GPR87 an attractive future anticancer target for drugs that – through inhibition of the receptor signaling – will inhibit its transforming properties.",
keywords = "GPR87, Cell signaling, Cell transformation, Cell clustering, Anticancer drugs",
author = "Arfelt, {Kristine Niss} and Suzan Fares and Sparre-Ulrich, {Alexander H.} and Hjorto, {Gertrud M.} and Gasbjerg, {Laerke S.} and Ann-Sofie Molleskov-Jensen and Tau Benned-Jensen and Rosenkilde, {Mette M.}",
year = "2017",
month = jan,
doi = "10.1016/j.cellsig.2016.11.009",
language = "English",
volume = "30",
pages = "9--18",
journal = "Cellular Signalling",
issn = "0898-6568",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Signaling via G proteins mediates tumorigenic effects of GPR87

AU - Arfelt, Kristine Niss

AU - Fares, Suzan

AU - Sparre-Ulrich, Alexander H.

AU - Hjorto, Gertrud M.

AU - Gasbjerg, Laerke S.

AU - Molleskov-Jensen, Ann-Sofie

AU - Benned-Jensen, Tau

AU - Rosenkilde, Mette M.

PY - 2017/1

Y1 - 2017/1

N2 - G protein-coupled receptors (GPCRs) constitute a large protein family of seven transmembrane (7TM) spanning proteins that regulate multiple physiological functions. GPR87 is overexpressed in several cancers and plays a role in tumor cell survival. Here, the basal activity of GPR87 was investigated in transiently transfected HEK293 cells, revealing ligand-independent coupling to Gαi, Gαq and Gα12/13. Furthermore, GPR87 showed a ligand-independent G protein-dependent activation of the downstream transcription factors CREB, NFκB, NFAT and SRE. In tetracycline-induced Flp-In T-Rex-293 cells, GPR87 induced cell clustering presumably through Gα12/13 coupling. In a foci formation assay using retrovirally transduced NIH3T3 cells, GPR87 showed a strong in vitro transforming potential, which correlated to the in vivo tumor induction in nude mice. Importantly, we demonstrate that the transforming potential of GPR87 was correlated to the receptor signaling, as the signaling-impaired mutant R139A (Arg in the conserved “DRY”-motif at the bottom of transmembrane helix 3 of GPR87 substituted to Ala) showed a lower in vitro cell transformation potential. Furthermore, R139A lost the ability to induce cell clustering. In summary, we show that GPR87 is active through several signaling pathways and that the signaling activity is linked to the receptor-induced cell transformation and clustering. The robust surface expression of GPR87 and general high druggability of GPCRs make GPR87 an attractive future anticancer target for drugs that – through inhibition of the receptor signaling – will inhibit its transforming properties.

AB - G protein-coupled receptors (GPCRs) constitute a large protein family of seven transmembrane (7TM) spanning proteins that regulate multiple physiological functions. GPR87 is overexpressed in several cancers and plays a role in tumor cell survival. Here, the basal activity of GPR87 was investigated in transiently transfected HEK293 cells, revealing ligand-independent coupling to Gαi, Gαq and Gα12/13. Furthermore, GPR87 showed a ligand-independent G protein-dependent activation of the downstream transcription factors CREB, NFκB, NFAT and SRE. In tetracycline-induced Flp-In T-Rex-293 cells, GPR87 induced cell clustering presumably through Gα12/13 coupling. In a foci formation assay using retrovirally transduced NIH3T3 cells, GPR87 showed a strong in vitro transforming potential, which correlated to the in vivo tumor induction in nude mice. Importantly, we demonstrate that the transforming potential of GPR87 was correlated to the receptor signaling, as the signaling-impaired mutant R139A (Arg in the conserved “DRY”-motif at the bottom of transmembrane helix 3 of GPR87 substituted to Ala) showed a lower in vitro cell transformation potential. Furthermore, R139A lost the ability to induce cell clustering. In summary, we show that GPR87 is active through several signaling pathways and that the signaling activity is linked to the receptor-induced cell transformation and clustering. The robust surface expression of GPR87 and general high druggability of GPCRs make GPR87 an attractive future anticancer target for drugs that – through inhibition of the receptor signaling – will inhibit its transforming properties.

KW - GPR87

KW - Cell signaling

KW - Cell transformation

KW - Cell clustering

KW - Anticancer drugs

U2 - 10.1016/j.cellsig.2016.11.009

DO - 10.1016/j.cellsig.2016.11.009

M3 - Journal article

C2 - 27865873

VL - 30

SP - 9

EP - 18

JO - Cellular Signalling

JF - Cellular Signalling

SN - 0898-6568

ER -

ID: 173563324