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miR-122-5p Expression and Secretion in Melanoma Cells Is Amplified by the LPAR3 SH3-Binding Domain to Regulate Wnt1
Charnel C Byrnes1, Wei Jia1, Ali A Alshamrani1
1Department of Pharmaceutical and Biomedical Sciences, The University of Georgia, Athens, Georgia.
Abstract:
The lysophosphatidic acid receptor-3 (LPAR3) is a G protein-coupled receptor that mediates viability among malignant cells and aggressiveness among certain tumors. The study's objective was to determine the interplay between LPAR3 and miRNAs to impact key cellular signaling pathways. Using SK-Mel-2 and SK-Mel-5 melanoma cells, wild-type and mutated receptors were stably expressed to explore molecular mechanisms. LPAR3 signaling induced miR-122-5p intracellularly and subsequently its inclusion into exosomes. This amplification resulted in less abundant Wnt1, maintenance of GSK3 inactivation and to a lesser extent, partial degradation of β-catenin. The surge in miR-122-5p and reduction in Wnt1 originated from signaling at the Src homology 3 (SH3) ligand-binding motif within the third intracellular loop of LPAR3, because mutant receptors did not increase miR-122-5p and had a weakened capacity to reduce Wnt1. In addition, a key mediator of melanoma survival signaling, the peroxisome proliferator-activated receptor gamma coactivator 1-α (PPARGC1A/PGC1), was involved in miR-122-5p transcription. In conclusion, this study highlights the powerful role miRNAs have in fine-tuning specific G protein-coupled receptor-mediated signaling events by altering the transcription of signaling transduction pathway components. This study also identifies that LPAR3 increases miR-122-5p expression, which occurs mechanistically through the SH3 domain and helps explain why miR-122-5p increases are detected in cancer patient serum. IMPLICATIONS: LPAR3 is partially responsible for the production and secretion of miR-122-5p, found in the serum of a wide variety of patients with cancer.
Insights
Lysophosphatidic acid receptor-3 (LPAR3) increases miR-122-5p expression, a microRNA found in cancer patient serum. This mechanism involves the LPAR3 SH3 domain and impacts cancer cell signaling pathways.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Lysophosphatidic acid receptor-3 (LPAR3), a G protein-coupled receptor, is implicated in malignant cell viability and tumor aggressiveness.
- MicroRNAs (miRNAs) play crucial roles in regulating cellular signaling pathways, but their specific interplay with LPAR3 in cancer remains to be fully elucidated.
Purpose of the Study:
- To investigate the molecular mechanisms underlying the interaction between LPAR3 and miRNAs in melanoma cells.
- To determine how LPAR3 signaling influences key cellular signaling pathways, including Wnt/β-catenin and miRNA transcription.
Main Methods:
- Stable expression of wild-type and mutated LPAR3 receptors in SK-Mel-2 and SK-Mel-5 melanoma cell lines.
- Analysis of intracellular and exosomal miR-122-5p levels, Wnt1, GSK3, and β-catenin.
- Investigation of the role of the LPAR3 SH3 ligand-binding motif and PPARGC1A/PGC1 in miR-122-5p regulation.
Main Results:
- LPAR3 signaling induced intracellular miR-122-5p and its subsequent release into exosomes.
- This resulted in decreased Wnt1 levels, sustained GSK3 inactivation, and partial β-catenin degradation.
- The LPAR3 SH3 domain was critical for miR-122-5p induction and Wnt1 reduction; PPARGC1A/PGC1 mediated miR-122-5p transcription.
Conclusions:
- miRNAs, such as miR-122-5p, are key regulators of G protein-coupled receptor-mediated signaling pathways by modulating the transcription of signaling components.
- LPAR3 enhances miR-122-5p expression via its SH3 domain, providing a mechanistic explanation for elevated miR-122-5p levels observed in cancer patient serum.
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