RIP1/RIP3-Calpain-Stat3 and NF-kappa B pathways in AML pathogenesis and treatment

Information

  • Research Project
  • 10149254
  • ApplicationId
    10149254
  • Core Project Number
    R01CA223194
  • Full Project Number
    5R01CA223194-04
  • Serial Number
    223194
  • FOA Number
    PA-16-160
  • Sub Project Id
  • Project Start Date
    5/1/2018 - 6 years ago
  • Project End Date
    4/30/2023 - a year ago
  • Program Officer Name
    O'HAYRE, MORGAN
  • Budget Start Date
    5/1/2021 - 3 years ago
  • Budget End Date
    4/30/2022 - 2 years ago
  • Fiscal Year
    2021
  • Support Year
    04
  • Suffix
  • Award Notice Date
    5/5/2021 - 3 years ago

RIP1/RIP3-Calpain-Stat3 and NF-kappa B pathways in AML pathogenesis and treatment

Both NF-?B and Stat3 are abnormally activated in leukemic blasts and are implicated in drug-resistance and poor prognosis, suggesting they could be potential targets for therapy. We found that inactivation of both NF-?B and Stat3 signaling pathways synergistically represses self-renewal and drug-resistance in leukemia stem cells (LSCs), suggesting a compensatory role for these two pathways in the pathogenesis of leukemia. Stat3? and Stat3? are two major splicing isoforms. Active Stat3? promotes tumor growth by regulating target gene expression (functions as a transcription factor) and controlling mitochondrial production of ATP and ROS (functions as a regulator of the electron transport chain), while Stat3? lacks a transactivation domain and functions as a dominant-negative to Stat3?. All currently used inhibitors of Stat3 only repress its transcriptional activity without taking consideration of its mitochondrial activity, which might explain why these inhibitors failed to repress leukemia in patients. It was reported that induction of the switch from Stat3? to Stat3? provides a better tumor repressive effect than inhibition of both isoforms. We found that we can induce such a switch by inhibiting the serine/threonine-protein kinases receptor-interacting protein kinase 1 (Rip1) and Rip3. Rip3 and NF-?B are parallel downstream signaling pathways of Rip1, mediating cytokine-induced kinase- dependent and -independent activities of Rip1. We found that a moderate level of activation of Rip1-Rip3 kinase signaling exists in acute myeloid leukemia (AML) cells with MLL1-rearrangement (MLL-r) or NPM1 mutation (NPM1c+). Rip1-Rip3 signaling plays distinct roles in normal hematopoietic stem/progenitor cells?HSPCs?and AML cells. In HSPCs, Rip1-Rip3 signaling mediates TNF? and IL1?-induced necroptosis, while in AML cells, the moderate activation of such signaling is required for maintaining the levels of Stat3? by inhibition of calpain (CAPN), a family of proteolytic enzymes. CAPN reduces Stat3? and enhances Stat3? by specifically cleaving Stat3? protein and also SFRS5, a splice regulator for alternative splicing for Stat3?. Inhibition of Rip1-Rip3 kinase signaling results in depletion of Stat3? and an increase of Stat3?. Our study suggested that, as with co-inhibition of Stat3 and NF-?B, co-inhibition of Rip1-Rip3 signaling and NF-?B also compromises self-renewal of LSCs and sensitizes AML to standard chemotherapy. We want to test our novel combination treatment regimen in primary human AML cells using xenograft models. We also intend to elucidate the molecular mechanisms by which Stat3 and NF-?B regulate self-renewal and drug-resistance in LSCs as well as the molecular mechanism by which Rip3 signaling regulates CAPN-dependent Stat3 isoform switch. The expected results of this study will allow us to determine whether combinations of currently known inhibitors of Rip1/Rip3 and NF-kB signaling could improve treatment for MLL-r and NPM1c+ AML when combined with standard chemotherapy. The mechanistic studies will provide detailed information allowing us to more effectively target the Rip3-CAPN-Stat3 pathway to treat AML.

IC Name
NATIONAL CANCER INSTITUTE
  • Activity
    R01
  • Administering IC
    CA
  • Application Type
    5
  • Direct Cost Amount
    228750
  • Indirect Cost Amount
    110779
  • Total Cost
    339529
  • Sub Project Total Cost
  • ARRA Funded
    False
  • CFDA Code
    395
  • Ed Inst. Type
    SCHOOLS OF MEDICINE
  • Funding ICs
    NCI:339529\
  • Funding Mechanism
    Non-SBIR/STTR RPGs
  • Study Section
    TCB
  • Study Section Name
    Tumor Cell Biology Study Section
  • Organization Name
    LOYOLA UNIVERSITY CHICAGO
  • Organization Department
    PATHOLOGY
  • Organization DUNS
    791277940
  • Organization City
    MAYWOOD
  • Organization State
    IL
  • Organization Country
    UNITED STATES
  • Organization Zip Code
    601533328
  • Organization District
    UNITED STATES