Since 1990, several genes have been identified that inhibit apoptosis, which is a common and widespread form of cell death. These genes include bcl-2 (a proto-oncogene that is overexpressed in many B-cell lymphomas), p35 (a baculovirus gene), ced-9 (a nematode developmental gene that is the homologue of bcl-2) and lmp-1 (an Epstein-Barr virus gene that enhances expressing of bcl-2). We discovered that bcl-2 inhibits neural cell death due to growth factors withdrawal, calcium ionophores, glucose withdrawal, membrane peroxidation, and free radical inducing agents (Zhong et al., 1993), suggesting that bc1-2 interacts with a biochemical step that is central to neural cell death. Moreover, bcl-2 inhibits both apoptotic and necrotic types of neural cell death via a reduction in cellular superoxide-driven Fenton chemistry. This represents the first understanding of the mechanism by which an anti-apoptotic gene functions, as well as the first demonstration that apoptosis is mediated by reactive oxygen species. Additionally, since Bcl-2 inhibits the formation of reactive oxygen species, the expression of bcl-2 may actually inhibit the aging process, as well as degenerative diseases. There are four likely mechanisms by which the protein Bcl-2 may inhibit the process of cell death mediated by Fenton-derived hydroxyl radicals: first, Bcl-2 may be a free radical scavenging protein. Second (and possibly in addition and to any scavenging activity), Bcl-2 may be a metal-binding protein. Third, Bcl-2 might be involved in the translocation of reduced glutathione into mitochondria. Fourth, Bcl-2 might inhibit the production of superoxide by interfering with the transfer of electrons from mitochondrial proteins (e.g., ubiquinone) to dioxygen, without actually forming a radical species itself. This proposal describes experiments that will distinguish between the four mechanistic possibilities described above, to extend our results to determine the biochemical mechanism by which bcl-2 inhibits cell death. Specifically, we propose to continue ongoing site-directed mutagenesis studies of bcl-2; to purify Bcl-2 protein from mutant yeast in which we have overexpressed bcl-2; to assay cytosolic and mitochondrial glutathione in bcl-2 expressing and control neural cells; to assay metal binding by Bcl-2; and, using electron spin resonance, to assess the ability of Bcl-2 to scavenge free radical species and to form a stable radical. The potential findings have important implications for the process of aging and degenerative disease.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
Research Project (R01)
Project #
2R01AG012282-04A1
Application #
2404888
Study Section
Neurological Sciences Subcommittee 1 (NLS)
Program Officer
Oliver, Eugene J
Project Start
1994-05-01
Project End
2000-06-30
Budget Start
1997-08-01
Budget End
1998-06-30
Support Year
4
Fiscal Year
1997
Total Cost
Indirect Cost
Name
Sanford-Burnham Medical Research Institute
Department
Type
DUNS #
009214214
City
La Jolla
State
CA
Country
United States
Zip Code
92037
Shay, Jerry W (2017) New insights into melanoma development. Science 357:1358-1359
Spilman, Patricia R; Corset, Veronique; Gorostiza, Olivia et al. (2016) Netrin-1 Interrupts Amyloid-? Amplification, Increases sA?PP? in vitro and in vivo, and Improves Cognition in a Mouse Model of Alzheimer's Disease. J Alzheimers Dis 52:223-42
Rao, Rammohan V; Descamps, Olivier; John, Varghese et al. (2012) Ayurvedic medicinal plants for Alzheimer's disease: a review. Alzheimers Res Ther 4:22
Sultana, Rukhsana; Robinson, RenĂ£ A S; Lange, Miranda Bader et al. (2012) Do proteomics analyses provide insights into reduced oxidative stress in the brain of an Alzheimer disease transgenic mouse model with an M631L amyloid precursor protein substitution and thereby the importance of amyloid-beta-resident methionine 35 in Alz Antioxid Redox Signal 17:1507-14
Mukherjee, Abhisek; Soto, Claudio (2011) Role of calcineurin in neurodegeneration produced by misfolded proteins and endoplasmic reticulum stress. Curr Opin Cell Biol 23:223-30
Robinson, R A S; Lange, M B; Sultana, R et al. (2011) Differential expression and redox proteomics analyses of an Alzheimer disease transgenic mouse model: effects of the amyloid-? peptide of amyloid precursor protein. Neuroscience 177:207-22
Zhang, Junli; Rao, Rammohan V; Spilman, Patricia et al. (2011) Endogenously EGFP-Labeled Mouse Embryonic Stem Cells. Aging Dis 2:18-29
Butterfield, D Allan; Galvan, Veronica; Lange, Miranda Bader et al. (2010) In vivo oxidative stress in brain of Alzheimer disease transgenic mice: Requirement for methionine 35 in amyloid beta-peptide of APP. Free Radic Biol Med 48:136-44
Sperandio, Sabina; Poksay, Karen S; Schilling, Birgit et al. (2010) Identification of new modulators and protein alterations in non-apoptotic programmed cell death. J Cell Biochem 111:1401-12
Fombonne, Joanna; Rabizadeh, Shahrooz; Banwait, Surita et al. (2009) Selective vulnerability in Alzheimer's disease: amyloid precursor protein and p75(NTR) interaction. Ann Neurol 65:294-303

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