# Inhibitory effect of PPARγ on NLRP3 inflammasome activation

**Authors:** Ching-Chun Yang, Chih-Hsing Wu, Ta-Chun Lin, Yi-Ning Cheng, Chin-Sung Chang, Kuo-Ting Lee, Pei-Jane Tsai, Yau-Sheng Tsai

PMC · DOI: 10.7150/thno.46873 · 2021-01-01

## TL;DR

This study shows that PPARγ can suppress NLRP3 inflammasome activation, offering a potential treatment for metabolic diseases.

## Contribution

The novel finding is that PPARγ interacts with NLRP3 to inhibit inflammasome activation, providing a new therapeutic target.

## Key findings

- PPARγ agonist rosiglitazone reduces caspase-1 and IL-1β maturation during NLRP3 activation.
- PPARγ interferes with NLRP3 inflammasome formation by disrupting key protein interactions.
- Obese patients showed reduced NLRP3 activity after weight-loss surgery, linked to PPARγ levels.

## Abstract

Rationale: Stimulation of the NLRP3 inflammasome by metabolic byproducts is known to result in inflammatory responses and metabolic diseases. However, how the host controls aberrant NLRP3 inflammasome activation remains unclear. PPARγ, a known regulator of energy metabolism, plays an anti-inflammatory role through the inhibition of NF-κB activation and additionally attenuates NLRP3-dependent IL-1β and IL-18 production. Therefore, we hypothesized that PPARγ serves as an endogenous modulator that attenuates NLRP3 inflammasome activation in macrophages.

Methods: Mouse peritoneal macrophages with exposure to a PPARγ agonist at different stages and the NLRP3 inflammasome-reconstituted system in HEK293T cells were used to investigate the additional anti-inflammatory effect of PPARγ on NLRP3 inflammasome regulation. Circulating mononuclear cells of obese patients with weight-loss surgery were used to identify the in vivo correlation between PPARγ and the NLRP3 inflammasome.

Results: Exposure to the PPARγ agonist, rosiglitazone, during the second signal of NLRP3 inflammasome activation attenuated caspase-1 and IL-1β maturation. Moreover, PPARγ interfered with NLRP3 inflammasome formation by decreasing NLRP3-ASC and NLRP3-NLRP3 interactions as well as NLRP3-dependent ASC oligomerization, which is mediated through interaction between the PPARγ DNA-binding domain and the nucleotide-binding and leucine-rich repeat domains of NLRP3. Furthermore, PPARγ was required to limit metabolic damage-associated molecular pattern-induced NLRP3 inflammasome activation in mouse macrophages. Finally, the mature caspase-1/PPARγ ratio was reduced in circulating mononuclear cells of obese patients after weight-loss surgery, which we define as an “NLRP3 accelerating index”.

Conclusions: These results revealed an additional anti-inflammatory role for PPARγ in suppressing NLRP3 inflammasome activation through interaction with NLRP3. Thus, our study highlights that PPARγ agonism may be a therapeutic option for targeting NLRP3-related metabolic diseases.

## Linked entities

- **Genes:** PPARG (peroxisome proliferator activated receptor gamma) [NCBI Gene 5468], NLRP3 (NLR family pyrin domain containing 3) [NCBI Gene 114548], STS (steroid sulfatase) [NCBI Gene 412]
- **Proteins:** PPARG (peroxisome proliferator activated receptor gamma), NLRP3 (NLR family pyrin domain containing 3), STS (steroid sulfatase), Caspase1 (caspase-1), IL1B (interleukin 1 beta)
- **Chemicals:** rosiglitazone (PubChem CID 77999)
- **Species:** Mus musculus (taxon 10090)

## Full-text entities

- **Genes:** MYC (MYC proto-oncogene, bHLH transcription factor) [NCBI Gene 4609] {aka MRTL, MYCC, bHLHe39, c-Myc}, PPARG (peroxisome proliferator activated receptor gamma) [NCBI Gene 5468] {aka CIMT1, FPLD3, GLM1, NR1C3, PPARG1, PPARG2}, S100a10 (S100 calcium binding protein A10 (calpactin)) [NCBI Gene 20194] {aka 42C, CAL12, CLP11, Cal1l, p10, p11}, Casp1 (caspase 1) [NCBI Gene 12362] {aka ICE, Il1bc}, ABHD5 (abhydrolase domain containing 5, lysophosphatidic acid acyltransferase) [NCBI Gene 51099] {aka CGI58, IECN2, NCIE2}, Nlrp3 (NLR family, pyrin domain containing 3) [NCBI Gene 216799] {aka AGTAVPRL, AII/AVP, Cias1, FCAS, FCU, MWS}, CASP1 (caspase 1) [NCBI Gene 834] {aka ICE, IL1BC, P45}, Aim2 (absent in melanoma 2) [NCBI Gene 383619] {aka Gm1313, Ifi210}, IL4 (interleukin 4) [NCBI Gene 3565] {aka BCGF-1, BCGF1, BSF-1, BSF1, IL-4}, NLRP3 (NLR family pyrin domain containing 3) [NCBI Gene 114548] {aka AGTAVPRL, AII, AVP, C1orf7, CIAS1, CLR1.1}, Pycard (PYD and CARD domain containing) [NCBI Gene 66824] {aka 9130417A21Rik, Asc, CARD5, TMS-1, TNS1, masc}, Il1b (interleukin 1 beta) [NCBI Gene 16176] {aka IL-1beta, Il-1b}, IL18 (interleukin 18) [NCBI Gene 3606] {aka IGIF, IL-18, IL-1g, IL1F4}, NFKB1 (nuclear factor kappa B subunit 1) [NCBI Gene 4790] {aka CVID12, EBP-1, KBF1, NF-kB, NF-kB1, NF-kappa-B1}, Lep (leptin) [NCBI Gene 16846] {aka ob, obese}, TXNIP (thioredoxin interacting protein) [NCBI Gene 10628] {aka ARRDC6, EST01027, HHCPA78, THIF, VDUP1}, INS (insulin) [NCBI Gene 3630] {aka IDDM, IDDM1, IDDM2, ILPR, IRDN, MODY10}, Nfkb1 (nuclear factor of kappa light polypeptide gene enhancer in B cells 1, p105) [NCBI Gene 18033] {aka NF-KB1, NF-kappaB, NF-kappaB1, p105, p50, p50/p105}, Fos (Fos proto-oncogene, AP-1 transcription factor subunit) [NCBI Gene 14281] {aka D12Rfj1, c-fos, cFos}, IL1B (interleukin 1 beta) [NCBI Gene 3553] {aka IL-1, IL1-BETA, IL1F2, IL1beta}, PYCARD (PYD and CARD domain containing) [NCBI Gene 29108] {aka ASC, CARD5, TMS, TMS-1, TMS1}, SRC (SRC proto-oncogene, non-receptor tyrosine kinase) [NCBI Gene 6714] {aka ASV, SRC1, THC6, c-SRC, p60-Src}, Nlrc4 (NLR family, CARD domain containing 4) [NCBI Gene 268973] {aka 9530011P19Rik, CLAN, CLAN1, CLANA, CLANB, CLANC}, Tnf (tumor necrosis factor) [NCBI Gene 21926] {aka DIF, TNF-a, TNF-alpha, TNFSF2, TNFalpha, Tnfa}, Pparg (peroxisome proliferator activated receptor gamma) [NCBI Gene 19016] {aka Nr1c3, PPAR-gamma, PPAR-gamma2, PPARgamma, PPARgamma2}, NEK7 (NIMA related kinase 7) [NCBI Gene 140609]
- **Diseases:** ASC (MESH:D065309), obese (MESH:D009765), melanoma 2 (MESH:D008545), metabolic syndrome (MESH:D024821), AF-1 (MESH:C538557), hyperglycemia (MESH:D006943), WCL (MESH:C531766), CMV (MESH:D003586), LBD (MESH:D006938), inflammation (MESH:D007249), atherosclerosis (MESH:D050197), insulin resistance (MESH:D007333), type 2 diabetes (MESH:D003924), tumor (MESH:D009369), metabolic diseases (MESH:D008659), AF-2 (MESH:D020803), NAFLD (MESH:D065626), -diabetic drugs (MESH:D003920), weight-loss (MESH:D015431)
- **Species:** Mus musculus (house mouse, species) [taxon 10090], Homo sapiens (human, species) [taxon 9606]
- **Mutations:** D62A, P467L, P465L
- **Cell lines:** C57BL/6J — Mus musculus (Mouse), Transformed cell line (CVCL_C0MW), ob — Mus musculus (Mouse), Spontaneously immortalized cell line (CVCL_S603), HEK293T — Homo sapiens (Human), Transformed cell line (CVCL_0063), S2 — Drosophila melanogaster (Fruit fly), Spontaneously immortalized cell line (CVCL_Z232)

## Figures

7 figures with captions in the complete paper: https://tomesphere.com/paper/PMC7797672/full.md

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Source: https://tomesphere.com/paper/PMC7797672