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4. Myelomonocytic cells in giant cell arteritis activate trained immunity programs sustaining inflammation and cytokine production.

5. Disulfide HMGB1 derived from platelets coordinates venous thrombosis in mice

6. The transcriptional regulator Sin3A balances IL‐17A and Foxp3 expression in primary CD4 T cells.

7. Aspirin’s Active Metabolite Salicylic Acid Targets High Mobility Group Box 1 to Modulate Inflammatory Responses

12. LPS-Challenged Macrophages Release Microvesicles Coated With Histones.

13. Chromatin conformation regulates the coordination between DNA replication and transcription.

14. Single-cell analyses reveal an attenuated NF- κ B response in the Salmonella -infected fibroblast.

16. Histone content increases in differentiating embryonic stem cells.

17. High-Throughput Analysis of NF-κB Dynamics in Single Cells Reveals Basal Nuclear Localization of NF-κB and Spontaneous Activation of Oscillations.

18. Rapamycin-sensitive signals control TCR/CD28-driven Ifng, Il4 and Foxp3 transcription and promoter region methylation.

19. Substantial Histone Reduction Modulates Genomewide Nucleosomal Occupancy and Global Transcriptional Output.

20. Sustained Oscillations of NF-κB Produce Distinct Genome Scanning and Gene Expression Profiles.

21. A hyper-dynamic equilibrium between promoter-bound and nucleoplasmic dimers controls NF-κB-dependent gene activity.

22. HMG proteins: dynamic players in gene regulation and differentiation

23. GR and HMGB1 Interact Only within Chromatin and Influence Each Other’s Residence Time

24. HMGB proteins and gene expression

25. HMGB1 interacts differentially with members of the Rel family of transcription factors

26. The double life of HMGB1 chromatin protein: architectural factor and extracellular signal.

27. To E or not to E?Can an IL-4-Induced B Cell Choose between IgE and IgG4?

28. Analysis of γ4 Germline Transcription in Human B Cells.

29. NF-κB, the Importance of Being Dynamic: Role and Insights in Cancer.

32. Interplay between stochasticity and negative feedback leads to pulsed dynamics and distinct gene activity patterns.

33. A simple model of dynamics reproduces experimental observations.

34. CXCL10 levels at hospital admission predict COVID-19 outcome: hierarchical assessment of 53 putative inflammatory biomarkers in an observational study.

35. Aspirin′s Active Metabolite Salicylic Acid Targets High Mobility Group Box 1 to Modulate Inflammatory Responses.

36. Receptor for Advanced Glycation Endproducts is upregulated in temporal lobe epilepsy and contributes to experimental seizures.

37. Glycyrrhizin Binds to High-Mobility Group Box 1 Protein and Inhibits Its Cytokine Activities

38. Exploiting Live Imaging to Track Nuclei During Myoblast Differentiation and Fusion.

39. Single-cell analyses reveal an attenuated NF-κB response in the Salmonella-infected fibroblast.

40. Sustained oscillations of NF-kappaB produce distinct genome scanning and gene expression profiles.

41. A hyper-dynamic equilibrium between promoter-bound and nucleoplasmic dimers controls NF-kappaB-dependent gene activity.

42. Monocytic cells hyperacetylate chromatin protein HMGB1 to redirect it towards secretion.

43. Association of chromatin proteins high mobility group box (HMGB) 1 and HMGB2 with mitotic chromosomes.

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