Search PubMed⌕ Search

Biomedical subjects

Hideyo Ugai

Publications and source records attributed to Hideyo Ugai.

20 records · Page 2Linked to original sources

Transcriptional regulation of the c-jun gene by AP-1 repressor protein JDP2 during the differentiation of F9 cells.

ATF-2 and p300 cooperate in the activation of transcription of the c-jun gene during the differentiation of F9 cells. We show here that a repressor of AP-1, JDP2 (Jun dimerization protein 2), inhibits the transactivation of the c-jun gene by ATF-2 and p300, by recruitment of a histone deacetylase complex, thereby repressing the retinoic acid (RA)-induced transcription of the c-jun gene and inhibiting the RA-mediated differentiation of F9 cells. Furthermore, JDP2/HDAC complex was replaced by p300 complex on the DRE (differentiation response element) of the c-jun promoter within 24 h after the start of exposure of cells to RA, with an accompanying change in the histone-acetylation status of the chromatin, indicating that the initiation of transcription of the c-jun gene was controled by sequential action of HDAC(s) and HAT(s) on c-jun promoter.

Animals↗

Stability of a recombinant adenoviral vector: optimization of conditions for storage, transport and delivery.

Recombinant viral vectors have been developed for use as therapeutic agents and for the introduction of exogenous genes into living cells. However, little is known about the viability and stability of such recombinant viruses during storage, transport and delivery under various conditions. We describe here an analysis of the stability of an adenoviral vector in crude solutions of cell lysates during freezing and thawing and during storage at various temperatures in the presence and in the absence of glycerol. For example, the titer of adenoviruses in crude lysates of infected cells was reduced only ten-fold or three-fold after two hundred rounds of freezing and thawing or after incubation at 28 degrees C for 14 days, respectively. Our observations indicate that recombinant adenoviral vector was more stable than expected both during freezing and thawing and during storage at low temperatures. Our results confirm the importance of appropriate conditions for the delivery and transport of recombinant adenoviral vectors.

Adenoviridae↗