The Role of DRP-1 and Mitochondrial Fission in Pulmonary Arterial Hypertension

Information

  • Research Project
  • 9040245
  • ApplicationId
    9040245
  • Core Project Number
    R01HL113003
  • Full Project Number
    5R01HL113003-04
  • Serial Number
    113003
  • FOA Number
    PA-11-260
  • Sub Project Id
  • Project Start Date
    4/1/2013 - 11 years ago
  • Project End Date
    3/31/2017 - 7 years ago
  • Program Officer Name
    XIAO, LEI
  • Budget Start Date
    4/1/2016 - 8 years ago
  • Budget End Date
    3/31/2017 - 7 years ago
  • Fiscal Year
    2016
  • Support Year
    04
  • Suffix
  • Award Notice Date
    3/25/2016 - 8 years ago

The Role of DRP-1 and Mitochondrial Fission in Pulmonary Arterial Hypertension

DESCRIPTION (provided by applicant): Pulmonary arterial hypertension (PAH) is a lethal syndrome characterized by obstruction of the pulmonary vasculature due (in part) to idiopathic hyper-proliferation of pulmonary arterial smooth muscle cells (PASMC). Preliminary data suggest that this proliferative diathesis relates to excessive mitochondrial fission caused by activation of dynamin related protein 1 (DRP-1). In this proposal we will define the molecular basis for dysregulation of fission in human PAH and explore the nature of the link between a mitochondrial fission-fusion cycle and the cell cycle. We also evaluate whether the requirement of these hyper-proliferative cells for high rates of mitochondrial fission presents an Achilles hee that can be therapeutically targeted. Experiments are performed in human PAH PASMC and lungs and in experimental models (induced by monocrotaline or SU5416 + hypoxia). Preliminary data indicate that human PAH PASMC have fragmented mitochondria, largely due to increased fission. We have developed metrics that use mitochondrial-targeted, photoactivated, green fluorescent protein (mito-paGFP) and 2-photon confocal microscopy to quantify mitochondrial fission. Increased fission in PAH appears to result from phosphorylation of DRP-1 at Serine 616 by the key mitotic regulatory kinase, Cyclin B1- CDK1, thus linking fission and mitosis. Elevated cytosolic calcium in PAH also promotes DRP-1-mediated fission by: a) activation of calmodulin kinase and b) calcineurin-mediated dephosphorylation of an inhibitory form of DRP- 1 (Phos-Ser637). Thus, increased activity of calcineurin, cyclin B1-CDK1 and DRP-1 promote fission and proliferation in human PAH PASMC; conversely, DRP-1 inhibition (via the small molecule inhibitor, mdivi-1, or siDRP-1) decreases PASMC proliferation and, in the case of mdivi-1, regresses PAH in vivo. Hypothesis: Pathologic DRP-1 activation increases fission and promotes excessive PASMC proliferation in PAH. Corollary: DRP-1 inhibition prevents cell cycle progression, causing G2-M phase arrest. Anti-fission therapies may constitute an antiproliferative therapy for PAH. Aim 1) Are DRP-1 activation and fission required for the hyperproliferation of PASMC in human PAH? Aim 2) Does post-translational DRP-1 modification regulate PASMC proliferation in PAH? Aim 3) Does inhibition of mitochondrial fission have therapeutic benefit in experimental PAH? Innovation and Impact: This proposal is innovative in recognizing that mitochondrial checkpoints, related to DRP-1 activation and fission, regulate cell cycle progression. The concept that mitochondrial fission is tightly linked to cell cycle progression via shared regulatory kinases is also novel. The discovery that inhibiting DRP-1 (directly or by targeting its regulatory kinases) is anti-proliferative offers a new, anti-fission profusion, therapeutic paradigm for PAH. The translational potential of this proposal is enhanced by careful correlation of results in rodent PAH models with findings in human PAH lungs/cells from a well-characterized cohort. This is the first study to exploit PAH's reliance on rapid fission to devise novel anti-fission, anti-proliferative therapies for PAH.

IC Name
NATIONAL HEART, LUNG, AND BLOOD INSTITUTE
  • Activity
    R01
  • Administering IC
    HL
  • Application Type
    5
  • Direct Cost Amount
    250000
  • Indirect Cost Amount
    20000
  • Total Cost
    270000
  • Sub Project Total Cost
  • ARRA Funded
    False
  • CFDA Code
    837
  • Ed Inst. Type
  • Funding ICs
    NHLBI:270000\
  • Funding Mechanism
    Non-SBIR/STTR RPGs
  • Study Section
    RIBT
  • Study Section Name
    Respiratory Integrative Biology and Translational Research Study Section
  • Organization Name
    QUEEN'S UNIVERSITY AT KINGSTON
  • Organization Department
  • Organization DUNS
    207884032
  • Organization City
    KINGSTON
  • Organization State
    ON
  • Organization Country
    CANADA
  • Organization Zip Code
    K7L 3N6
  • Organization District
    CANADA