Physiol. Genomics  AJP: Regulatory, Integrative and Comparative Physiology
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Physiol. Genomics (August 5, 2003). doi:10.1152/physiolgenomics.00020.2003 Free Article
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Submitted on February 14, 2003
Accepted on July 30, 2003

Gene Expression Profiling and Functional Proteomic Analysis Reveal Perturbed Kinase-Mediated Signaling in Genetic Stroke Susceptibility

Myriam Fornage1*, Michael W Swank2, Eric Boerwinkle3, and Peter A Doris1

1 Institute of Molecular Medicine, The University of Texas- Houston, Houston, TX, USA
2 Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, USA
3 Human Genetics Center, The University of Texas-Houston, Houston, TX, USA

* To whom correspondence should be addressed. E-mail: myriam.fornage{at}uth.tmc.edu.

The stroke-prone spontaneously hypertensive rat (SHRSP) is a model of heritable hypertension-associated cerebrovascular injury. This study sought to compare SHRSP to the stroke-resistant SHR strain to identify genes and protein pathways whose expression and/or function was significantly altered between the strains prior to the onset of stroke. Cerebral cortex gene expression profiles from male SHRSPs and matched SHRs were examined by Affymetrix microarray analysis. mRNAs encoding the Brain-Derived Neurotrophic Factor receptor (TrkB) and multiple kinases of the MAPK/AKT signaling pathways, including JNK2, AKT2, and PI3K were differentially expressed between SHRSP and SHR. Because these data suggest altered function in pathways involving MAP and AKT kinase activity, we performed Western blot using phosphorylation state-specific antibodies to characterize activity of MAP kinase and PI-3K/AKT pathways. Changes in the levels of the phosphorylated forms of these kinases paralleled the changes in transcript levels observed between the strains. Two-dimensional gel electrophoresis and peptide fragment mass fingerprinting were used to identify altered protein substrates of these kinases. Protein profiling of kinase substrates further supported the notion of perturbed kinase-mediated signaling in SHRSP and identified adenylyl cyclase associated protein 2, TOAD-64, propionyl CoA carboxylase, APG-1, and valosin-containing protein as kinase targets whose phosphorylation state is altered between these strains. Altered gene and protein expression patterns in SHRSP are consistent with increased vulnerability of this strain to cerebrovascular injury.




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