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1. A dual role of Cohesin in DNA DSB repair

2. Transcription factor TCF-1 regulates the functions, but not the development, of lymphoid tissue inducer subsets in different tissues

3. T cell intrinsic STAT1 signaling prevents aberrant Th1 responses during acute toxoplasmosis

4. Environmental arginine controls multinuclear giant cell metabolism and formation

5. Multi-Dimensional Gene Regulation in Innate and Adaptive Lymphocytes: A View From Regulomes

6. Divergent Role for STAT5 in the Adaptive Responses of Natural Killer Cells

7. Jakinibs of All Trades: Inhibiting Cytokine Signaling in Immune-Mediated Pathologies

8. JAK Inhibition Differentially Affects NK Cell and ILC1 Homeostasis

9. The Histone Variant MacroH2A1.2 Is Necessary for the Activation of Muscle Enhancers and Recruitment of the Transcription Factor Pbx1

10. Epigenomic Views of Innate Lymphoid Cells

12. Variant STAT4 and Response to Ruxolitinib in an Autoinflammatory Syndrome

17. Human germline heterozygous gain-of-function STAT6 variants cause severe allergic disease

18. A Decade of JAK Inhibitors: What Have We Learned and What May Be the Future?

19. JAK-STAT signaling in human disease: From genetic syndromes to clinical inhibition

20. A central role for STAT5 in the transcriptional programing of T helper cell metabolism

21. JAK inhibitors: Ten years after

22. The JAK-STAT pathway at 30: Much learned, much more to do

23. Remodeling of Il4-Il13-Il5 locus underlies selective gene expression

24. From thymus to tissues and tumors: A review of T-cell biology

25. BACH2 enforces the transcriptional and epigenetic programs of stem-like CD8+ T cells

26. Translating JAKs to Jakinibs

27. Cholesterol 25-hydroxylase is a metabolic switch to constrain T cell-mediated inflammation in the skin

28. MicroRNA-directed pathway discovery elucidates an miR-221/222–mediated regulatory circuit in class switch recombination

29. Single-Cell RNA-Seq Reveals TOX as a Key Regulator of CD8+ T cell Persistence in Chronic Infection

30. The γc Family of Cytokines: Basic Biology to Therapeutic Ramifications

31. Steroid responsiveness in Foxp3(+) regulatory T cells determines steroid sensitivity during allergic airway inflammation in mice

32. Phase 1 double-blind randomized safety trial of the Janus kinase inhibitor tofacitinib in systemic lupus erythematosus

33. Compromised counterselection by FAS creates an aggressive subtype of germinal center lymphoma

34. Rapid enhancer remodeling and transcription factor repurposing enable high magnitude gene induction upon acute activation of NK cells

35. BACH2 enforces the transcriptional and epigenetic programs of stem-like CD8

36. NCR + ILC3 maintain larger STAT4 reservoir via T‐BET to regulate type 1 features upon IL‐23 stimulation in mice

37. RNF144A shapes the hierarchy of cytokine signaling to provide protective immunity against influenza

39. Neuropeptide CGRP limits group 2 innate lymphoid cell responses and constrains type 2 inflammation

40. PI3Kd coordinates transcriptional, epigenetic and metabolic changes to promote effector CD8 T cells at the expense of memory

41. STAT1 gain of function mutation impairs immune response to viral infections

42. A critical CTCF binding site of the Ifng-Il22 locus specifies cytokine expression and finetunes immune response

43. Author Correction: BACH2 enforces the transcriptional and epigenetic programs of stem-like CD8+ T cells

44. MicroRNA-221 and -222 modulate intestinal inflammatory Th17 cell response as negative feedback regulators downstream of interleukin-23

45. Tofacitinib Ameliorates Murine Lupus and Its Associated Vascular Dysfunction

46. Targeting cytokine signaling in autoimmunity: back to the future and beyond

47. Developmental Acquisition of Regulomes Underlies Innate Lymphoid Cell Functionality

48. PI3Kδ coordinates transcriptional, chromatin, and metabolic changes to promote effector CD8+ T cells at the expense of central memory

49. Abstract PO-22: Compromised counterselection by FAS creates a lethal subtype of germinal center lymphoma

50. SnapShot: Jak-STAT Signaling II

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