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Biomedical subjects

A Ignatova

Publications and source records attributed to A Ignatova.

7 recordsLinked to original sources

Regulation of the expression of cyclin-dependent kinase inhibitor p21 by E2A and Id proteins.

The helix-loop-helix transcription factor E2A plays important roles not only in promoting cellular differentiation but also in suppressing cell growth. Id proteins, the inhibitors of E2A, have opposite effects on cell differentiation and growth. To understand the mechanisms by which E2A suppresses cell growth, we examined the role of E2A in regulating the expression of the cyclin-dependent kinase inhibitor p21CIP1/WAF1/SD11, which prevents cell cycle progression upon overexpression. By using transient-cotransfection assays of luciferase reporter constructs in HeLa cells, we have found that overexpression of E2A can transcriptionally activate the p21 gene. To identify the sequences that mediate this activation in the promoter of the p21 gene, we carried out mutational analyses. Out of the eight putative E2A-binding sequences (E1 to E8) in the promoter, the E1 to E3 sequences located close to the transcription start site are found to be essential. In addition, loss of the E boxes in the promoter also reduces p21 expression without cotransfection with E2A in HIT pancreatic cells, where the endogenous E2A-like activity is high. Furthermore, we have also shown that overexpression of E2A in 293T cells activates expression of the endogenous p21 gene at both the levels of mRNA and protein. In correlation with the finding that E47 overexpression leads to growth arrest in NIH 3T3 cells, we have shown that Id1 overexpression in NIH 3T3 cells accelerates cell growth and inhibits p21 expression. Taken together, these results provide insight into the mechanisms by which E2A and Id proteins control cell growth.

3T3 Cells↗

Chemical composition and biological activity of leaf exudates from some Lamiaceae plants.

Leaf exudates from 39 species, belonging to 26 genera of Lamiaceae, have been isolated and their antibacterial and antiviral activity investigated. Some of the active compounds (ursolic acid, siderol and nepetalactone) were isolated and identified, most of them for the first time in the investigated plants. Some chemotaxonomic conclusions were drawn.

Anti-Bacterial Agents↗

[Protoplast reversion in Bacillus subtilis].

The reversion of the protoplasts of two strains Bac. subtilis on 3 nutritive media: DP of Elliott et al., DM3 of Chang and Cohen and MRG of Bourne and Dancer, is studied. Special attention is devoted to the role of the components gelatin, bovine serum albumin and osmotic stabilizer. In relation to the conclusions drawn in the study a new medium for reversion of protoplasts is suggested--the glucitole reversion agar GRA ensuring continuous 20-40% reversion of the sown protoplasts.

Bacillus subtilis↗