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Your search keyword '"bacterial chromatin"' showing total 21 results

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21 results on '"bacterial chromatin"'

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1. Nucleoid-associated proteins shape the global protein occupancy and transcriptional landscape of a clinical isolate of Vibrio cholerae .

2. Bacterial chromatin proteins, transcription, and DNA topology: Inseparable partners in the control of gene expression.

3. Principles of bacterial genome organization, a conformational point of view.

4. Rok from B. subtilis: Bridging genome structure and transcription regulation.

5. In Vitro Transcription Assay to Quantify Effects of H-NS Filaments on RNA Chain Elongation by RNA Polymerase.

6. Unravelling DNA Organization with Single-Molecule Force Spectroscopy Using Magnetic Tweezers.

7. Shedding Light on Bacterial Chromosome Structure: Exploring the Significance of 3C-Based Approaches.

8. Genomic Instability of G-Quadruplex Sequences in Escherichia coli : Roles of DinG, RecG, and RecQ Helicases.

9. RfaH Counter-Silences Inhibition of Transcript Elongation by H-NS-StpA Nucleoprotein Filaments in Pathogenic Escherichia coli.

10. The Spatial Organization of Bacterial Transcriptional Regulatory Networks.

11. Effect of Different Crowding Agents on the Architectural Properties of the Bacterial Nucleoid-Associated Protein HU.

12. Crucial Role of the C-Terminal Domain of Hfq Protein in Genomic Instability.

13. Role of Hfq in Genome Evolution: Instability of G-Quadruplex Sequences in E. coli .

14. The architects of bacterial DNA bridges: a structurally and functionally conserved family of proteins.

15. Post-translational modification of nucleoid-associated proteins: an extra layer of functional modulation in bacteria?

16. Dimerization site 2 of the bacterial DNA-binding protein H-NS is required for gene silencing and stiffened nucleoprotein filament formation.

17. Unraveling DNA Organization with Single-Molecule Force Spectroscopy Using Magnetic Tweezers.

18. Determination of the 3D Genome Organization of Bacteria Using Hi-C.

19. Mechanism of environmentally driven conformational changes that modulate H-NS DNA-bridging activity.

20. Bacterial-Chromatin Structural Proteins Regulate the Bimodal Expression of the Locus of Enterocyte Effacement (LEE) Pathogenicity Island in Enteropathogenic Escherichia coli .

21. Spatial organization of DNA sequences directs the assembly of bacterial chromatin by a nucleoid-associated protein.

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