TY - JOUR
T1 - UVB light upregulates prostaglandin synthases and prostaglandin receptors in mouse keratinocytes
AU - Black, Adrienne T.
AU - Gray, Joshua P.
AU - Shakarjian, Michael P.
AU - Mishin, Vladimir
AU - Laskin, Debra L.
AU - Heck, Diane E.
AU - Laskin, Jeffrey D.
N1 - Funding Information:
This work was supported in part by National Institutes of Health grants CA100994, CA093798, ES005022, ES004738, AR055073, GM034310 and by NJ State Commission on Cancer Research fellowship 05-2413-CCR-E0 awarded to ATB. This work was also funded in part by the National Institutes of Health CounterACT Program through the National Institute of Arthritis and Musculoskeletal and Skin Diseases (award #U54AR055073). Its contents are solely the responsibility of the authors and do not necessarily represent the official views of the federal government.
PY - 2008/10/1
Y1 - 2008/10/1
N2 - Prostaglandins belong to a class of cyclic lipid-derived mediators synthesized from arachidonic acid via COX-1, COX-2 and various prostaglandin synthases. Members of this family include prostaglandins such as PGE2, PGF2α, PGD2 and PGI2 (prostacyclin) as well as thromboxane. In the present studies we analyzed the effects of UVB on prostaglandin production and prostaglandin synthase expression in primary cultures of undifferentiated and calcium-differentiated mouse keratinocytes. Both cell types were found to constitutively synthesize PGE2, PGD2 and the PGD2 metabolite PGJ2. Twenty-four hours after treatment with UVB (25 mJ/cm2), production of PGE2 and PGJ2 increased, while PGD2 production decreased. This was associated with increased expression of COX-2 mRNA and protein. UVB (2.5-25 mJ/cm2) also caused marked increases in mRNA expression for the prostanoid synthases PGDS, mPGES-1, mPGES-2, PGFS and PGIS, as well as expression of receptors for PGE2 (EP1 and EP2), PGD2 (DP and CRTH2) and prostacyclin (IP). UVB was more effective in inducing COX-2 and DP in differentiated cells and EP1 and IP in undifferentiated cells. UVB readily activated keratinocyte PI-3-kinase (PI3K)/Akt, JNK and p38 MAP signaling pathways which are known to regulate COX-2 expression. While inhibition of PI3K suppressed UVB-induced mPGES-1 and CRTH2 expression, JNK inhibition suppressed mPGES-1, PGIS, EP2 and CRTH2, and p38 kinase inhibition only suppressed EP1 and EP2. These data indicate that UVB modulates expression of prostaglandin synthases and receptors by distinct mechanisms. Moreover, both the capacity of keratinocytes to generate prostaglandins and their ability to respond to these lipid mediators are stimulated by exposure to UVB.
AB - Prostaglandins belong to a class of cyclic lipid-derived mediators synthesized from arachidonic acid via COX-1, COX-2 and various prostaglandin synthases. Members of this family include prostaglandins such as PGE2, PGF2α, PGD2 and PGI2 (prostacyclin) as well as thromboxane. In the present studies we analyzed the effects of UVB on prostaglandin production and prostaglandin synthase expression in primary cultures of undifferentiated and calcium-differentiated mouse keratinocytes. Both cell types were found to constitutively synthesize PGE2, PGD2 and the PGD2 metabolite PGJ2. Twenty-four hours after treatment with UVB (25 mJ/cm2), production of PGE2 and PGJ2 increased, while PGD2 production decreased. This was associated with increased expression of COX-2 mRNA and protein. UVB (2.5-25 mJ/cm2) also caused marked increases in mRNA expression for the prostanoid synthases PGDS, mPGES-1, mPGES-2, PGFS and PGIS, as well as expression of receptors for PGE2 (EP1 and EP2), PGD2 (DP and CRTH2) and prostacyclin (IP). UVB was more effective in inducing COX-2 and DP in differentiated cells and EP1 and IP in undifferentiated cells. UVB readily activated keratinocyte PI-3-kinase (PI3K)/Akt, JNK and p38 MAP signaling pathways which are known to regulate COX-2 expression. While inhibition of PI3K suppressed UVB-induced mPGES-1 and CRTH2 expression, JNK inhibition suppressed mPGES-1, PGIS, EP2 and CRTH2, and p38 kinase inhibition only suppressed EP1 and EP2. These data indicate that UVB modulates expression of prostaglandin synthases and receptors by distinct mechanisms. Moreover, both the capacity of keratinocytes to generate prostaglandins and their ability to respond to these lipid mediators are stimulated by exposure to UVB.
KW - Cyclooxygenase
KW - DP
KW - EP1
KW - PGDS
KW - Prostacyclin
KW - mPGES
UR - https://www.scopus.com/pages/publications/51549111351
UR - https://www.scopus.com/pages/publications/51549111351#tab=citedBy
U2 - 10.1016/j.taap.2008.05.017
DO - 10.1016/j.taap.2008.05.017
M3 - Article
C2 - 18597804
AN - SCOPUS:51549111351
SN - 0041-008X
VL - 232
SP - 14
EP - 24
JO - Toxicology and Applied Pharmacology
JF - Toxicology and Applied Pharmacology
IS - 1
ER -