The urokinase (uPA)-uPA receptor (uPAR) system is implicated in the pathogenesis of pulmonary inflammation and neoplasia via proteolytic remodeling, nonproteolytic signaling and regulation of cell migration and mitogenesis. In patients with acute lung injury (All), depressed uPA-mediated fibrinolytic activity promotes alveolar fibrin deposition, favoring accelerated fibrotic repair. We recently demonstrated that lung epithelial cells regulate both uPA and uPAR at the posttranscriptional level of mRNA stability. We hypothesize that expression of uPA and uPAR by lung epithelial cells is regulated via these newly appreciated posttranscriptional pathways to influence epithelial cell responses germane to All and its repair. Our objective is to elucidate these pathways. These pathways are poorly understood at this time, representing an important gap in our understanding of the pathogenesis of ALL Our preliminary data support the hypothesis and show that phosphoglycerate kinase (PGK) and other newly appreciated uPAR and uPA mRNA binding protein-mRNA interactions control uPAR and uPA expression by lung epithelial cells.
Our Specific Aims are: 1) To determine how PGK and another newly recognized uPAR mRNA coding region binding protein regulate uPAR expression in lung epithelial cells. 2) To elucidate the role of newly recognized 3'-untranslated region (3'UTR) uPAR mRNA-binding protein interactions on uPAR expression. 3) To determine mechanism(s) by which PGK and hnRNPC, another putative regulatory protein, regulate cytokine mediated expression of uPAR in lung epithelial cells. 4) To clone the cDNA for the uPA mRNABp and determine how it regulates uPA expression in lung epithelial cells. These studies will extend our - understanding of mechanisms by which lung epithelial cells regulate uPAR and uPA expression and hasten the development of novel therapeutics for ALI and its repair.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Program Projects (P01)
Project #
5P01HL076406-03
Application #
7492131
Study Section
Heart, Lung, and Blood Initial Review Group (HLBP)
Project Start
Project End
Budget Start
2007-09-01
Budget End
2008-08-31
Support Year
3
Fiscal Year
2007
Total Cost
$374,814
Indirect Cost
Name
University of Texas Health Center at Tyler
Department
Type
DUNS #
800772337
City
Tyler
State
TX
Country
United States
Zip Code
75708
Idell, Steven; Florova, Galina; Shetty, Sreerama et al. (2017) Precision-guided, Personalized Intrapleural Fibrinolytic Therapy for Empyema and Complicated Parapneumonic Pleural Effusions: The Case for the Fibrinolytic Potential. Clin Pulm Med 24:163-169
Hijazi, Nuha; Abu Fanne, Rami; Abramovitch, Rinat et al. (2015) Endogenous plasminogen activators mediate progressive intracerebral hemorrhage after traumatic brain injury in mice. Blood 125:2558-67
Armstead, William M; Riley, John; Cines, Douglas B et al. (2014) PAI-1-derived peptide EEIIMD prevents hypoxia/ischemia-induced aggravation of endothelin- and thromboxane-induced cerebrovasoconstriction. Neurocrit Care 20:111-8
Karandashova, Sophia; Florova, Galina; Azghani, Ali O et al. (2013) Intrapleural adenoviral delivery of human plasminogen activator inhibitor-1 exacerbates tetracycline-induced pleural injury in rabbits. Am J Respir Cell Mol Biol 48:44-52
Armstead, William M; Bohman, Leif-Erik; Riley, John et al. (2013) tPA-S(481)A prevents impairment of cerebrovascular autoregulation by endogenous tPA after traumatic brain injury by upregulating p38 MAPK and inhibiting ET-1. J Neurotrauma 30:1898-907
Marcos-Contreras, O A; Ganguly, K; Yamamoto, A et al. (2013) Clot penetration and retention by plasminogen activators promote fibrinolysis. Biochem Pharmacol 85:216-22
Armstead, William M; Riley, John; Cines, Douglas B et al. (2012) Combination therapy with glucagon and a novel plasminogen activator inhibitor-1-derived peptide enhances protection against impaired cerebrovasodilation during hypotension after traumatic brain injury through inhibition of ERK and JNK MAPK. Neurol Res 34:530-7
Armstead, William M; Ganguly, Kumkum; Riley, John et al. (2012) RBC-coupled tPA Prevents Whereas tPA Aggravates JNK MAPK-Mediated Impairment of ATP- and Ca-Sensitive K Channel-Mediated Cerebrovasodilation After Cerebral Photothrombosis. Transl Stroke Res 3:114-21
Armstead, William M; Riley, John; Yarovoi, Serge et al. (2012) tPA-S481A prevents neurotoxicity of endogenous tPA in traumatic brain injury. J Neurotrauma 29:1794-802
Tucker, Torry A; Williams, LaTerrica; Koenig, Kathleen et al. (2012) Lipoprotein receptor-related protein 1 regulates collagen 1 expression, proteolysis, and migration in human pleural mesothelial cells. Am J Respir Cell Mol Biol 46:196-206

Showing the most recent 10 out of 63 publications