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Updated: Mar 22, 2026

A Pipeline to Investigate the Structures and Signaling Pathways of Sphingosine 1-Phosphate Receptors
Published on: June 8, 2022
Sphingosine 1-phosphate elicits RhoA-dependent proliferation and MRTF-A mediated gene induction in CPCs
Alessandra Castaldi1, Gino P Chesini1, Amy E Taylor1
1Department of Pharmacology, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0636, USA.
Abstract:
Although c-kit(+) cardiac progenitor cells (CPCs) are currently used in clinical trials there remain considerable gaps in our understanding of the molecular mechanisms underlying their proliferation and differentiation. G-protein coupled receptors (GPCRs) play an important role in regulating these processes in mammalian cell types thus we assessed GPCR mRNA expression in c-kit(+) cells isolated from adult mouse hearts. Our data provide the first comprehensive overview of the distribution of this fundamental class of cardiac receptors in CPCs and reveal notable distinctions from that of adult cardiomyocytes. We focused on GPCRs that couple to RhoA activation in particular those for sphingosine-1-phosphate (S1P). The S1P2 and S1P3 receptors are the most abundant S1P receptor subtypes in mouse and human CPCs while cardiomyocytes express predominantly S1P1 receptors. Treatment of CPCs with S1P, as with thrombin and serum, increased proliferation through a pathway requiring RhoA signaling, as evidenced by significant attenuation when Rho was inhibited by treatment with C3 toxin. Further analysis demonstrated that both S1P- and serum-induced proliferation are regulated through the S1P2 and S1P3 receptor subtypes which couple to Gα12/13 to elicit RhoA activation. The transcriptional co-activator MRTF-A was activated by S1P as assessed by its nuclear accumulation and induction of a RhoA/MRTF-A luciferase reporter. In addition S1P treatment increased expression of cardiac lineage markers Mef2C and GATA4 and the smooth muscle marker GATA6 through activation of MRTF-A. In conclusion, we delineate an S1P-regulated signaling pathway in CPCs that introduces the possibility of targeting S1P2/3 receptors, Gα12/13 or RhoA to influence the proliferation and commitment of c-kit(+) CPCs and improve the response of the myocardium following injury.
Insights
Sphingosine-1-phosphate (S1P) signaling via S1P2/3 receptors activates RhoA, promoting cardiac progenitor cell (CPC) proliferation and differentiation. This pathway offers therapeutic targets for myocardial repair.
Area of Science:
- Cardiovascular Biology
- Cell Signaling
- Regenerative Medicine
Background:
- Cardiac progenitor cells (CPCs) are crucial for cardiac repair but their proliferation and differentiation mechanisms are not fully understood.
- G-protein coupled receptors (GPCRs) regulate mammalian cell functions, including those of CPCs.
Purpose of the Study:
- To comprehensively analyze GPCR mRNA expression in c-kit(+) CPCs.
- To investigate the role of sphingosine-1-phosphate (S1P) signaling in CPC proliferation and differentiation.
Main Methods:
- Isolation and analysis of c-kit(+) CPCs from adult mouse hearts.
- Quantitative assessment of GPCR mRNA expression.
- Functional assays involving S1P, thrombin, serum, and RhoA inhibition (C3 toxin).
- Analysis of MRTF-A activation and downstream gene expression (Mef2C, GATA4, GATA6).
Main Results:
- CPCs express distinct GPCR profiles compared to cardiomyocytes, with abundant S1P2 and S1P3 receptors.
- S1P, thrombin, and serum induce CPC proliferation via RhoA signaling, requiring S1P2/3 receptors coupled to Gα12/13.
- S1P activates the transcriptional co-activator MRTF-A, leading to increased expression of cardiac and smooth muscle lineage markers.
Conclusions:
- A novel S1P-regulated signaling pathway involving S1P2/3 receptors, Gα12/13, RhoA, and MRTF-A is identified in CPCs.
- Targeting this pathway presents a potential strategy to modulate CPC behavior for improved cardiac regeneration and post-injury myocardial response.
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