Radiation Augments a Sequential Program of Differentiation in PKC Inhibitor- pretreated Mouse Epidermal Cells
スポンサーリンク
概要
- 論文の詳細を見る
The aim of this study was to determine whether γ-rays affect differentiation in mouse epidermal cells. After a pre-treatment with the PKC inhibitor staurosporin (STS) or 1-(5-isoquinolinesulfomyl)-2- methylpiperazine (H7), γ-rays were irradiated with or without an elevation of 0.12 mM Ca^2+ and expressions of differentiation markers and each PKC isozyme were examined in normal primary and v-ras^<Ha> transformed mouse keratinocytes. Gamma-rays induced the expressions of differentiation markers of keratin 1 and 10 (K1 and 10), filaggrin, loricrin and SPR-1 in normal keratinocytes when the Ca^<2+> concentration was increased, and these phenomena were augmented in H7 pretreated cells. Similar results were obtained in STS pretreated cells; in this case, γ-rays enhanced the expressions of the differentiation markers even without an elevated Ca^<2+> concentration. In v-rasHa transformed cells, γ-rays induced the expression of differentiation markers not only at 0.05 mM Ca^<2+>, but in 0.12 mM Ca^<2+>-shifted cells, and in H7 pretreated cells, these phenomena were augmented. The translocation of PKCα to the particulate fraction was seen in H7 pretreated normal keratinocytes. Radiation also induced PKCα expression in STS pretreated cells, independent of Ca^<2+>-shift, as well as altered expressions of PKCδ and -η, while expressions of PKCα, -δ, -ε, and -η were enhanced in v-ras^<Ha> transformed cells. In conclusion, g-rays augmented the expressions of both spinous and granular differentiation markers in normal and v-ras^<Ha> transformed keratinocytes and this effect was augmented when PKC inhibitors were used, which may be mediated by the cellular redistribution of PKC isozymes.
- 日本放射線影響学会の論文
著者
-
LEE Su-Jae
Basic Research Laboratory, Electronics and Telecommunications Research Institute
-
Lee Su-jae
Basic Research Laboratory Electronics And Telecommunications Research Institute
-
Lee Su-jae
Laboratory Of Radiation Experimental Therapeutics Korea Institute Of Radiological And Medical Scienc
-
Lee Su-jae
Laboratory Of Radiation Effect Korea Cancer Center Hospital
-
LEE Yun-Sil
Laboratory of Radiation Effect Korea Cancer Center Hospital
-
KIM TAE-HWAN
Laboratory of Radiation Effect, Korea Cancer Center Hospital
-
Bae In-hwa
Laboratory Of Radiation Effect Korea Cancer Center Hospital
-
Cho Chul-koo
Laboratory Of Radiation Effect Korea Cancer Center Hospital
-
Lee Suk-jin
Department Of Materials Science And Engineering Korea University
-
Kim Tae-hwan
Laboratory Of Radiation Effect Korea Cancer Center Hospital
-
YI MIN-JEONG
Laboratory of Radiation Effect, Korea Cancer Center Hospital
-
Yi Min-jeong
Laboratory Of Radiation Effect Korea Cancer Center Hospital:department Of Food And Microbial Technol
関連論文
- High Dielectric Tunability of (Ba, Sr)TiO_3 Thin Films and Their Coplanar Waveguide Phase Shifter Applications
- A K-Band Distributed Analog Phase Shifter Using Etched Ba_Sr_TiO_3 Thin Films
- Low-Frequency Dielectric Responses of Barium Strontium Titanate Thin Films with Conducting Perovskite LaNiO_3 Electrode
- Expression patterns of cell cycle-related proteins in a rat cirrhotic model induced by CCl_4 or thioacetamide
- Dependence of Malformation upon Gestational Age and Exposed Dose of Gamma Radiation
- Structural and Dielectric Properties of the BaTi_5O_ Thin Film Grown on the Poly-Si Substrate using RF Magnetron Sputtering
- Hsp25 Regulates the Expression of p21(Wafl/Cip1/Sdi1)through Multiple Mechanisms
- BaTi_4O_9 Thin Film Prepared by RF Magnetron Sputtering for Microwave Applications
- Increased Expression of Ornithine Decarboxylase by Gamma-ray in Mouse Epidermal Cells : Relationship with Protein Kinase C Signaling Pathway
- Radiation Augments a Sequential Program of Differentiation in PKC Inhibitor- pretreated Mouse Epidermal Cells
- Protein Biosynthesis in Low Dose Ionizing Radiation-Adapted Human Melanoma Cells
- p27Cip/Kip Is Involved in Hsp25 or Inducible Hsp70 Mediated Adaptive Response by Low Dose Radiation
- A K-Band Distributed Analog Phase Shifter Using Etched Ba0.6Sr0.4TiO3 Thin Films
- Structural and Dielectric Properties of the BaTi5O11 Thin Film Grown on the Poly-Si Substrate using RF Magnetron Sputtering