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Ben Abid, S.

Publications and source records attributed to Ben Abid, S..

2 recordsLinked to original sources

Evidences of an inhibitory effect and other functions of human P53 in Escherichia coli

The human tumor suppressor P53 has so far been shown to inhibit growth in the yeast model as well as in other eukaryotic contexts. Despite a considerable number of sudies involving p53 in bacteria, the question of effects on cell growth and viability has never been explored. In this work, we report similar negative effect on cell viability of the protein expressed in Escherichia coli strain BL21(DE3). This inhibition still needs to be characterized in lights of the distinction between yeast and other organisms with different P53-caused deaths and pathways. Primary tests leaned towards an active p53 in this bacterial context, both under normal and stresseful conditions. Special effects were noticed either with phage infection or antibiotic treatment, using a GST-p53 fusion form. These results open the way for further investigations involving P53 in prokaryote systems.

cell biology↗

Phage libraries screening on P53: yield improvement by zinc and a new parasites integrating analysis and rationale

P53 is a transcription factor that controls a variety of genes, primarily involved in cell cycle and other processes related to cell survival and death. We have isolated peptides targeting P53 (protein and domains) using the "phage display" technique. Interestingly, adding ZnCl2 at 5-10 mM in panning solutions helped to recover more plaque-forming units at least at round one of the screening. Subtractive docking analyses were designed by using a pool of common redundant peptides known as parasites. This rationale helped us differentiate between possibly specific and non-specific bindings. We found notable differences in docking characteristics between different sets of peptides either related to different targets or related to zinc-conditions. The set of zinc-related peptides shows advantageous docking profiles: sharper binding for some positions and distinct exclusive bound residues, including the relevant R248 and R273. Zinc would have modulating/helping role in the targeting of protein P53 by phage displayed peptides in addition to an enhancement action on bacterial infection.

molecular biology↗