Return
Sodium butyrate upregulates URAT1-mediated urate reabsorption in HK2 cells by activating FFAR2/p38 MAPK/ELK1/ARRB2 axis and relieving NF-κB–HNF1β competitive binding
C
M
J
Z
Y
Y
L
X
Y
B
DOI:10.1016/j.bcp.2026.118308.png)
Abstract
En 中文
Urate transporter 1 (URAT1, encoded by SLC22A12) is a key mediator of renal urate reabsorption and an important pharmacological target for urate-related disorders. Sodium butyrate (BuNa), a gut microbiota derived short-chain fatty acid, has been implicated in host metabolic regulation, but its role in renal urate transport remains unclear. Here, using molecular docking, cellular thermal shift assays, immunoprecipitation-mass spectrometry and multi-omics analyses, we identified free fatty acid receptor 2 (FFAR2) as a direct target of BuNa in renal proximal tubular HK2 cells . BuNa binding upregulated FFAR2 and promoted URAT1 expression and urate uptake via an FFAR2-dependent pathway. Mechanistically, BuNa/FFAR2 signaling acts via GNAQ to activate PLCβ, generating diacylglycerol and engaging a PKC-dependent p38 MAPK/ELK1 cascade that upregulates arrestin beta 2 (ARRB2). ARRB2 directly binds to IκB, preventing its phosphorylation-dependent degradation, thereby stabilizing IκB and inhibiting NF-κB nuclear translocation. Within the SLC22A12 promoter, NF-κB (RELA/p50) and hepatocyte nuclear factor 1 beta (HNF1β) compete for overlapping binding sites. By blocking NF-κB nuclear entry, BuNa relieves this competition, permitting HNF1β-driven SLC22A12 transcription. Thus, BuNa enhances URAT1-mediated urate reabsorption in HK2 cells via an FFAR2/GNAQ/p38 MAPK/ELK1/ARRB2 axis that stabilizes IκB, suppresses NF-κB, and relieves the competitive binding between NF-κB and HNF1β on the SLC22A12 promoter. These findings establish a previously unrecognized gut microbiota–kidney axis linking microbial BuNa to renal urate homeostasis through a novel transcriptional regulatory circuit.
Journal
IF:
5.6
Papers:
1.3W
Citations:
3.3W
