Sita Subbaram, Ph.D.

Affiliations: 
2008 Albany Medical College of Union University 
Area:
Molecular Biology, Cell Biology
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"Sita Subbaram"

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J Andre Melendez grad student 2008 Albany Medical College of Union University
 (Redox-control of co-activators and repressors of human matrix metalloproteinase-1 transcription.)
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Publications

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Missan DS, Mitchell K, Subbaram S, et al. (2015) Integrin α3β1 signaling through MEK/ERK determines alternative polyadenylation of the MMP-9 mRNA transcript in immortalized mouse keratinocytes. Plos One. 10: e0119539
Bartling TR, Subbaram S, Clark RR, et al. (2014) Redox-sensitive gene-regulatory events controlling aberrant matrix metalloproteinase-1 expression. Free Radical Biology & Medicine. 74: 99-107
McCarthy DA, Ranganathan A, Subbaram S, et al. (2013) Redox-control of the alarmin, Interleukin-1α. Redox Biology. 1: 218-25
McCarthy D, Hempel N, Subbaram S, et al. (2011) Redox-control of Senescence Associated IL-1alpha Free Radical Biology and Medicine. 51: S78
Kar S, Subbaram S, Carrico PM, et al. (2010) Redox-control of matrix metalloproteinase-1: a critical link between free radicals, matrix remodeling and degenerative disease. Respiratory Physiology & Neurobiology. 174: 299-306
McCarthy DA, Subbaram S, Ranganathan A, et al. (2010) The Redox Dependent Role of IL-1α in Senescence Associated Inflammation Free Radical Biology and Medicine. 49: S146
Subbaram S, Melendez JA, Chittur SV. (2008) Method for conducting microarray study of oxidative stress induced gene expression. Methods in Molecular Biology (Clifton, N.J.). 477: 357-68
Dasgupta J, Subbaram S, Connor KM, et al. (2006) Manganese superoxide dismutase protects from TNF-alpha-induced apoptosis by increasing the steady-state production of H2O2. Antioxidants & Redox Signaling. 8: 1295-305
Nelson KK, Subbaram S, Connor KM, et al. (2006) Redox-dependent matrix metalloproteinase-1 expression is regulated by JNK through Ets and AP-1 promoter motifs. The Journal of Biological Chemistry. 281: 14100-10
Connor KM, Subbaram S, Regan KJ, et al. (2005) Mitochondrial H2O2 regulates the angiogenic phenotype via PTEN oxidation. The Journal of Biological Chemistry. 280: 16916-24
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