The objective of this work is to determine the role of mitochondrial injury in cytotoxicity and multistep carcinogenesis induced by diverse polycyclic aromatic hydrocarbons and arylamines. Recently, we have purified four distinct forms of mitochondrial p- 450 and characterized them by in vitro reconstitution of monooxygenase activity and amino acid as well as cDNA sequencing. Further, a mitochondrial specific protein kinase has been partially purified and characterized in this laboratory. This N- myristoylated protein kinase is regulated bY tumour promoter phorbol ester, and shows 20 fold higher activity in tumor cells. Based on this, it is proposed to continue research to determine the immediate as well as the long term effects of mitochondrial genetic and metabolic injury to cellular processes and carcinogenesis as follows: 1) Search for additional forms of p-450 using various xenobiotic as well as physiological inducers and purify and characterize them, as well as the recently identified sex specific form of P-450, from hepatic tissue. 2) Determine the levels of constitutive and inducible p-450 in mitochondria from other target cells and tissues and correlate with the extent of carcinogen binding to mitochondrial DNA. 3) Further characterization of mitochondrial DNA deletions in Ehrlich ascites cells and elucidate the source of aberrant transcription initiation in these cells by in vitro run off assays using cloned DNA templates, partially purified RNA polymerase and factors. 4) Analyze DNA from chemically transformed and established tumor cells to identify mitochondrial mutations. 5) Further characterization of mitochondrial protein kinase with respect to catalytic function and regulation, and determine its primary structure by cDNA cloning and sequencing to understand the molecular basis of altered activity in tumor cells. The long term objective is to determine the function of this gene in cellular processes using the transgenic mouse system.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA022762-15
Application #
3165915
Study Section
Metabolic Pathology Study Section (MEP)
Project Start
1978-02-01
Project End
1994-03-31
Budget Start
1992-04-01
Budget End
1993-03-31
Support Year
15
Fiscal Year
1992
Total Cost
Indirect Cost
Name
University of Pennsylvania
Department
Type
Schools of Veterinary Medicine
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Chowdhury, A Roy; Long, A; Fuchs, S Y et al. (2017) Mitochondrial stress-induced p53 attenuates HIF-1? activity by physical association and enhanced ubiquitination. Oncogene 36:397-409
Srinivasan, Satish; Guha, Manti; Kashina, Anna et al. (2017) Mitochondrial dysfunction and mitochondrial dynamics-The cancer connection. Biochim Biophys Acta Bioenerg 1858:602-614
Guha, Manti; Srinivasan, Satish; Koenigstein, Alexander et al. (2016) Enhanced osteoclastogenesis by mitochondrial retrograde signaling through transcriptional activation of the cathepsin K gene. Ann N Y Acad Sci 1364:52-61
Guha, Manti; Srinivasan, Satish; Guja, Kip et al. (2016) HnRNPA2 is a novel histone acetyltransferase that mediates mitochondrial stress-induced nuclear gene expression. Cell Discov 2:16045
Srinivasan, S; Guha, M; Dong, D W et al. (2016) Disruption of cytochrome c oxidase function induces the Warburg effect and metabolic reprogramming. Oncogene 35:1585-95
Kinugasa, H; Whelan, K A; Tanaka, K et al. (2015) Mitochondrial SOD2 regulates epithelial-mesenchymal transition and cell populations defined by differential CD44 expression. Oncogene 34:5229-39
Dong, Dawei W; Srinivasan, Satish; Guha, Manti et al. (2015) Defects in cytochrome c oxidase expression induce a metabolic shift to glycolysis and carcinogenesis. Genom Data 6:99-107
Bhattacharya, Sabyasachi; Katlinski, Kanstantsin V; Reichert, Maximilian et al. (2014) Triggering ubiquitination of IFNAR1 protects tissues from inflammatory injury. EMBO Mol Med 6:384-97
Guha, M; Srinivasan, S; Ruthel, G et al. (2014) Mitochondrial retrograde signaling induces epithelial-mesenchymal transition and generates breast cancer stem cells. Oncogene 33:5238-50
Guha, Manti; Avadhani, Narayan G (2013) Mitochondrial retrograde signaling at the crossroads of tumor bioenergetics, genetics and epigenetics. Mitochondrion 13:577-91

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