| Literature DB >> 27988893 |
José R Fernández1, Corey Webb1, Karl Rouzard1, Michael Voronkov1, Kristen L Huber1, Jeffry B Stock1,2, Maxwell Stock1, Joel S Gordon1, Eduardo Perez3.
Abstract
Isoprenylcysteine (IPC) small molecules were discovered as signal transduction modulating compounds ~25 years ago. More recently, IPC molecules have demonstrated antioxidant and anti-inflammatory properties in a variety of dermal cells as well as antimicrobial activity, representing a novel class of compounds to ameliorate skin conditions and disease. Here, we demonstrate a new IPC compound, N-acetylglutaminoyl-S-farnesyl-L-cysteine (SIG-1191), which inhibits UVB-induced inflammation blocking pro-inflammatory cytokine interleukin-6 (IL-6) and tumor necrosis factor alpha (TNF-α) production. To investigate further the previously reported hydrating potential of IPC compounds, SIG-1191 was tested for its ability to modulate aquaporin expression. Specifically, aquaporin 3 (AQP3) the most abundant aquaporin found in skin has been reported to play a key role in skin hydration, elasticity and barrier repair. Results show here for the first time that SIG-1191 increases AQP3 expression in both cultured normal human epidermal keratinocytes as well as when applied topically in a three-dimensional (3D) reconstructed human skin equivalent. Additionally, SIG-1191 dose dependently increased AQP3 protein levels, as determined by specific antibody staining, in the epidermis of the 3D skin equivalents. To begin to elucidate which signaling pathways SIG-1191 may be modulating to increase AQP3 levels, we used several pharmacological pathway inhibitors and determined that AQP3 expression is mediated by the Mitogen-activated protein kinase/Extracellular signal-regulated kinase kinase (MEK) pathway. Altogether, these data suggest SIG-1191 represents a new IPC derivative with anti-inflammatory activity that may also promote increased skin hydration based on its ability to increase AQP3 levels.Entities:
Keywords: Aquaglyceroporin-3; Inflammation; Isoprenylcysteine; Skin hydration
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Year: 2016 PMID: 27988893 PMCID: PMC5309294 DOI: 10.1007/s00403-016-1708-x
Source DB: PubMed Journal: Arch Dermatol Res ISSN: 0340-3696 Impact factor: 3.017
Fig. 1SIG-1191 has anti-inflammatory activity blocking UVB pro-inflammatory cytokine production. a Chemical structure of monosodium salt of N-acetylglutaminoyl-S-farnesyl-l-cysteine (SIG-1191) b Cells were incubated with SIG-1191 for 6 h, washed and irradiated in PBS with 25 mJ/cm2 UVB and later incubated without SIG-1191 in supplement-depleted media for 24 h. Pro-inflammatory cytokines (IL-6 and TNF-α) were measured from media supernatants by ELISA. The data represent the mean ± SEM of cumulative from three independent experiments. *p < 0.05 indicates a statistically significant difference compared to UVB-only irradiated cells
Fig. 2SIG-1191 increases AQP3 gene expression in a dose- and time-dependent manner. a NHEKs were treated with the indicated concentrations of SIG-1191 for 24 h. b Cells were treated with 10 µM SIG-1191 (2, 4, 6, 8, 24, 48 h) and harvested for gene expression analysis. The level of gene expression of aquaporins (AQP3, AQP9) was quantitated by qPCR normalizing to level of GAPDH the control housekeeping gene. The data represent the mean ± SEM of cumulative from three independent experiments. *p < 0.05; **p ≤ 0.01 indicates a statistically significant difference compared to untreated cells
Fig. 3AQP3 gene expression is activated by the MEK pathway. NHEKs were treated with 10 µM SIG-1191 with and without the indicated pathway inhibitors (1 µM CAY10594 (CAY) a phospholipase D2 inhibitor; 10 µM LY294002 (LY) a phosphatidylinositol 3-kinase inhibitor; 10 µM U0126 (U) a MAPK/ERK kinase inhibitor) for 24 h and harvested for AQP3 mRNA levels. Gene expression of AQP3 was analyzed by qPCR normalized to GAPDH, a control housekeeping gene. The data represent the mean ± SEM of cumulative from three independent experiments. *p < 0.05; **p ≤ 0.01 indicates a statistically significant difference compared to untreated cells (ns not significant)
Fig. 4SIG-1191 increases AQP3 gene expression and protein levels in Reconstructed Human Epidermis (RHE). EpiDerm-FT™ air–liquid interface cultures were topically treated with 0.25–0.5% (w/v) of SIG-1191 for 24 h. a AQP3 gene expression was analyzed by qPCR normalized to GAPDH a control housekeeping gene. The data represent the mean ± SEM of a representative experiment. b Haematoxylin and eosin (H&E) staining and immunohistochemistry (IHC) of EpiDerm-FT™ tissues. Immunohistochemistry was performed with anti-aquaporin-3 (green), anti-keratin-10 (red), anti-rabbit Alexa-488, anti-mouseAlexa-594 antibodies. Sections were counterstained with 2-(4-amidinophenyl)-1H-indole-6-carboxamidine (DAPI). Merged micrograph shows overlaying K10 and AQP3 antibodies with DAPI staining. No background fluorescence was observed in the absence of the primary antibody (not shown). Original magnification: ×400