The objectives of this proposal are to determine the molecular processes underlying spontaneous Ca2+ release events in smooth muscle cells. Spontaneous and triggered release of Ca2+ ions from the sarcoplasmic reticulum of smooth muscle cells is a key event associated with contraction of the smooth muscle and bronchoconstriction of the airways. In recent years it has become clear that this Ca2+ release process is quite complicated, with two major intracellular Ca2+ release. Ryanodine receptors comprise one family of Ca2+ release channels; the function of these channels in skeletal and cardiac muscle is well established, but their role in the contraction of smooth muscle is less clear. A prominent feature of the electrical activity of smooth muscle cells in the airways is the appearance of spontaneous depolarizing and spontaneous hyperpolarizing currents. These currents arise from the opening of calcium-sensitive membrane channels following a brief release of calcium from the sarcoplasmic reticulum. This calcium release has been shown to arise from the spontaneous gating of ryanodine receptors, and the Ca2+ release that occurs have been termed Ca2+ sparks. These sparks arise from specific areas within smooth muscle cells, analogous to their appearance at the triads of striated muscle. Release of Ca2+ is also propagated as waves throughout the cell cytoplasm by the gating of ryanodine receptors. The underlying structures and channels mediating and regulating spontaneous Ca2+ release and propagated Ca2+ waves will be determined in this proposal. Mice have been generated lacking specific elements of ryanodine receptor complex and the properties of the Ca2+ release in myocytes from these cells will be determined as a way of identifying the specific role of individual proteins in this complex process. Moreover, the effect of this deletion on airway function will be determined, in order to assess the importance of this process in the complex control of airway tone.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
2R01HL045239-13
Application #
6474851
Study Section
Lung Biology and Pathology Study Section (LBPA)
Program Officer
Noel, Patricia
Project Start
1990-07-01
Project End
2007-05-31
Budget Start
2002-06-01
Budget End
2003-05-31
Support Year
13
Fiscal Year
2002
Total Cost
$278,250
Indirect Cost
Name
Cornell University
Department
Other Basic Sciences
Type
Schools of Veterinary Medicine
DUNS #
City
Ithaca
State
NY
Country
United States
Zip Code
14850
Tallini, Yvonne Norine; Greene, Kai Su; Shui, Bo et al. (2014) Genetically encoded probes provide a window on embryonic arrhythmia. Methods Mol Biol 1092:195-219
Nadworny, Alyson S; Guruju, Mallik R; Poor, Daniel et al. (2013) Nox2 and Nox4 influence neonatal c-kit(+) cardiac precursor cell status and differentiation. Am J Physiol Heart Circ Physiol 305:H829-42
Chen, Zheng; Li, Zhengzheng; Wei, Bin et al. (2010) FKBP12.6-knockout mice display hyperinsulinemia and resistance to high-fat diet-induced hyperglycemia. FASEB J 24:357-63
Zhang, Xu; Tallini, Yvonne N; Chen, Zheng et al. (2009) Dissociation of FKBP12.6 from ryanodine receptor type 2 is regulated by cyclic ADP-ribose but not beta-adrenergic stimulation in mouse cardiomyocytes. Cardiovasc Res 84:253-62
Tallini, Yvonne N; Greene, Kai Su; Craven, Michael et al. (2009) c-kit expression identifies cardiovascular precursors in the neonatal heart. Proc Natl Acad Sci U S A 106:1808-13
Huan, Chunlei; Greene, Kai Su; Shui, Bo et al. (2008) mCLCA4 ER processing and secretion requires luminal sorting motifs. Am J Physiol Cell Physiol 295:C279-87
Wei, Bin; Chen, Zheng; Zhang, Xu et al. (2008) Nitric oxide mediates stretch-induced Ca2+ release via activation of phosphatidylinositol 3-kinase-Akt pathway in smooth muscle. PLoS One 3:e2526
Wang, Qi; Shui, Bo; Kotlikoff, Michael I et al. (2008) Structural basis for calcium sensing by GCaMP2. Structure 16:1817-27
Ledoux, Jonathan; Taylor, Mark S; Bonev, Adrian D et al. (2008) Functional architecture of inositol 1,4,5-trisphosphate signaling in restricted spaces of myoendothelial projections. Proc Natl Acad Sci U S A 105:9627-32
Tallini, Yvonne N; Brekke, Johan Fredrik; Shui, Bo et al. (2007) Propagated endothelial Ca2+ waves and arteriolar dilation in vivo: measurements in Cx40BAC GCaMP2 transgenic mice. Circ Res 101:1300-9

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