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Manipulating DNA damage-response signaling for the treatment of immune-mediated diseases

  • Jonathan P. McNally
  • , Scott H. Millen
  • , Vandana Chaturvedi
  • , Nora Lakes
  • , Catherine E. Terrell
  • , Eileen E. Elfers
  • , Kaitlin R. Carroll
  • , Simon P. Hogan
  • , Paul R. Andreassen
  • , Julie Kanter
  • , Carl E. Allen
  • , Michael M. Henry
  • , Jay N. Greenberg
  • , Stephan Ladisch
  • , Michelle L. Hermiston
  • , Michael Joyce
  • , David A. Hildeman
  • , Jonathan D. Katz
  • , Michael B. Jordan
  • University of Cincinnati
  • Medical University of South Carolina
  • Baylor College of Medicine
  • Phoenix Children's Hospital
  • Children's National Medical Center
  • University of California at San Francisco
  • Alfred I. duPont Hospital for Children

Producción científicarevisión exhaustiva

58 Citas (Scopus)

Resumen

Antigen-activated lymphocytes undergo extraordinarily rapid cell division in the course of immune responses. We hypothesized that this unique aspect of lymphocyte biology leads to unusual genomic stress in recently antigen-activated lymphocytes and that targeted manipulation of DNA damage-response (DDR) signaling pathways would allow for selective therapeutic targeting of pathological T cells in disease contexts. Consistent with these hypotheses, we found that activatedmouse and human T cells display a pronounced DDR in vitro and in vivo. Upon screening a variety of small-molecule compounds, we found that potentiation of p53 (via inhibition of MDM2) or impairment of cell cycle checkpoints (via inhibition of CHK1/2 or WEE1) led to the selective elimination of activated, pathological T cells in vivo. The combination of these strategies [which we termed "p53 potentiation with checkpoint abrogation" (PPCA)] displayed therapeutic benefits in preclinical disease models of hemophagocytic lymphohistiocytosis and multiple sclerosis, which are driven by foreign antigens or self-antigens, respectively. PPCA therapy targeted pathological T cells but did not compromise naive, regulatory, or quiescent memory T-cell pools, and had a modest nonimmune toxicity profile. Thus, PPCA is a therapeutic modality for selective, antigen-specific immune modulation with significant translational potential for diverse immune-mediated diseases.

Idioma originalEnglish
Páginas (desde-hasta)E4782-E4791
PublicaciónProceedings of the National Academy of Sciences of the United States of America
Volumen114
N.º24
DOI
EstadoPublished - 13 jun 2017
Publicado de forma externa

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