Biological aging of skeletal muscle is associated with progressively increasing levels of apoptosis,contributing to the development of sarcopenia. These apoptotic mechanisms appear to involve specificallypathways initiated and executed at the level of the ER and/or SR. Not surprisingly, the anti-apoptotic proteinBcl-2 localizes to the ER and inhibits apoptosis thorugh a slight (ca. 20-30%) reduction of ER calcium levels.However, the actual mechanisms of this process are just beginning to be uncovered. One possible route tothe lowering of ER calcium is a Bcl-2-dependent stimulation of the inositol-1,4,5-phosphate receptor (IP3R).A second potential mechanism affording reduced ER calcium levels involves a Bcl-2-dependent partialinactivation of the sarco/endoplasmic reticulum Ca-ATPase (SERCA).The longterm objective of this proposal is to delineate the individual steps of the second mechanism, i.e.SERCA modulation by the anti-apoptotic protein Bcl-2, and compare the SERCA/Bcl-2 interaction to effectsof Bcl-2 on the IP3R. These mechanisms will be studied in four Specific Aims, which will (1) characterize thecomplex between Bcl-2 and SERCA in vivo and in vitro using electron microscopy, photoaffinity labeling,attenuated total reflectance-Fourier transform IR spectroscopy and phosphorescence spectroscopy, theeffect of aging and Bcl-2 phosphorylation on Bcl-2/SERCA complex formation, and the biologic significanceof the Bcl-2/SERCA interaction using time-resolved measurements of intracellular calcium, (2) characterizethe effects of the pro-apototic proteins Bak and Bad on the SERCA/Bcl-2 interaction, (3) perform electronmicroscopy and functional studies in vivo and in cell culture on the co-localization of Hsp70 with SERCA andBcl-2 and the functional effect of Bcl-2 on SERCA as well as of Hsp70 on the interaction of Bcl-2 withSERCA, as well as mass spectrometry experiments for a stoichiometric analysis of the composition of Bcl-2/SERCA complexes, and (4) characterize in vitro in purified SR the functional interaction of Bcl-2 andSERCA in the presence of Hsp70, calreticulin and phospholamban, and quantify the stoichiometry proteinproteininteraction.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
Research Program Projects (P01)
Project #
2P01AG012993-11A2
Application #
7347338
Study Section
Special Emphasis Panel (ZAG1-ZIJ-2 (O1))
Project Start
2008-04-01
Project End
2013-02-28
Budget Start
2008-04-01
Budget End
2009-02-28
Support Year
11
Fiscal Year
2008
Total Cost
$252,757
Indirect Cost
Name
University of Kansas Lawrence
Department
Type
DUNS #
076248616
City
Lawrence
State
KS
Country
United States
Zip Code
66045
Hewarathna, Asha; Dremina, Elena; Schöneich, Christian (2017) Inhibition and conformational change of SERCA3b induced by Bcl-2. Biochim Biophys Acta Proteins Proteom 1865:121-131
Schöneich, Christian (2016) Thiyl radicals and induction of protein degradation. Free Radic Res 50:143-9
Poole, Leslie B; Schöneich, Christian (2015) Introduction: What we do and do not know regarding redox processes of thiols in signaling pathways. Free Radic Biol Med 80:145-7
Nauser, Thomas; Koppenol, Willem H; Schöneich, Christian (2015) Protein thiyl radical reactions and product formation: a kinetic simulation. Free Radic Biol Med 80:158-63
Badawi, Yomna; Pal, Ranu; Hui, Dongwei et al. (2015) Ischemic tolerance in an in vivo model of glutamate preconditioning. J Neurosci Res 93:623-32
Wang, Xinkun; Patel, Nilam D; Hui, Dongwei et al. (2014) Gene expression patterns in the hippocampus during the development and aging of Glud1 (Glutamate Dehydrogenase 1) transgenic and wild type mice. BMC Neurosci 15:37
Jiang, Lei; Bechtel, Misty D; Bean, Jennifer L et al. (2014) Effects of gangliosides on the activity of the plasma membrane Ca2+-ATPase. Biochim Biophys Acta 1838:1255-65
Schöneich, Christian; Dremina, Elena; Galeva, Nadezhda et al. (2014) Apoptosis in differentiating C2C12 muscle cells selectively targets Bcl-2-deficient myotubes. Apoptosis 19:42-57
Wang, Shu-Lin; Sun, Liuchao; Fang, Jianwen (2014) Molecular cancer classification using a meta-sample-based regularized robust coding method. BMC Bioinformatics 15 Suppl 15:S2
Choi, In-Young; Lee, Phil; Wang, Wen-Tung et al. (2014) Metabolism changes during aging in the hippocampus and striatum of glud1 (glutamate dehydrogenase 1) transgenic mice. Neurochem Res 39:446-55

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