Role of orphan G protein-coupled receptor GPR52 in breast cancer cell multicellular organization and collective invasion.

TitleRole of orphan G protein-coupled receptor GPR52 in breast cancer cell multicellular organization and collective invasion.
Publication TypeJournal Article
Year of Publication2026
AuthorsHanif SZ, Kutz C, Au CMCherie, Torregroza I, Palikhe S, Jannath SY, Fabiha T, Bhinder B, Washburn MP, Devost D, Liu S, Bhardwaj P, Evans T, Liang X, Anand PKumar, Tarran R, Elemento O, Dow LE, Blenis J, Hébert TE, Brown KA
JournalBr J Cancer
Date Published2026 Aug 20
ISSN1532-1827
Abstract

BACKGROUND: G protein-coupled receptors (GPCRs) are the largest class of membrane-bound receptors and are emerging as targets for the effective treatment of cancer. The role of orphan GPCR GPR52 in cancer has not been characterized. Low mRNA expression of GPR52 in breast tumours correlates with reduced overall survival, leading to the hypothesis that loss of GPR52 supports breast cancer progression.

METHODS: CRISPR-Cas9 was used to knock out GPR52 in the human triple-negative breast cancer cell lines MDA-MB-468 and MDA-MB-231. 2D and 3D in vitro studies, electron microscopy, and a zebrafish xenograft model were used to assess the morphology and behaviour of GPR52 KO cells.

RESULTS: Loss of GPR52 was associated with elevated levels of cAMP, increased cell-cell interaction in 2D cultures, more spindle-like morphology on collagen, altered 3D spheroid morphology, and increased propensity to organize and invade collectively. Zebrafish injected with GPR52 KO cells developed a greater total cancer area than control. RNA sequencing and proteomic analyses of GPR52-null cells revealed an increased cAMP signalling signature. Re-expression of GPR52 and inhibition of cAMP production rescued some GPR52 KO phenotypes.

CONCLUSIONS: GPR52 loss is a potential mechanism by which breast cancer progression may occur and supports the investigation of GPR52 agonism as a therapeutic option for breast cancer.

STATEMENT OF SIGNIFICANCE: Loss of the orphan GPCR GPR52 in human breast cell lines leads to increased cell clustering, hybrid/partial EMT, and increased tumour burden in zebrafish, further expanding our understanding of mechanisms driving cancer progression and opening the door to novel therapeutic approaches.

DOI10.1038/s41416-026-03565-0
Alternate JournalBr J Cancer
PubMed ID42624887
PubMed Central ID8541931
Grant ListT2025-007 / / V Foundation for Cancer Research (V Foundation) /
T32GM152349 / / U.S. Department of Health & Human Services | National Institutes of Health (NIH) /