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The Prostate|August 12, 2014
RAD9 enhances radioresistance of human prostate cancer cells through regulation of ITGB1 protein levelsConstantinos G Broustas, Howard B Lieberman
Journal of Cellular Biochemistry|October 29, 2011
Contributions of Rad9 to tumorigenesisConstantinos G Broustas, Howard B Lieberman
Radiation Research|January 9, 2014
DNA damage response genes and the development of cancer metastasisConstantinos G Broustas, Howard B Lieberman
The Journal of Biological Chemistry|October 16, 2012
Rad9 protein contributes to prostate tumor progression by promoting cell migration and anoikis resistanceConstantinos G Broustas, Aiping Zhu, Howard B Lieberman
Scientific Reports|May 14, 2021
Impact of aging on gene expression response to x-ray irradiation using mouse bloodConstantinos G Broustas, Axel J Duval, Sally A Amundson
BMC Genomics|June 30, 2018
Identification of differentially expressed genes and pathways in mice exposed to mixed field neutron/photon radiationConstantinos G Broustas, Andrew D Harken, Guy Garty, et al.
Cytogenetic and Genome Research|March 17, 2023
Effect of Age and Sex on Gene Expression-Based Radiation Biodosimetry Using Mouse Peripheral BloodConstantinos G Broustas, Igor Shuryak, Axel J Duval, et al.
Radiation Research|February 1, 2017
p53 and RAD9, the DNA Damage Response, and Regulation of Transcription NetworksHoward B Lieberman, Sunil K Panigrahi, Kevin M Hopkins, et al.
BMC Genomics|January 5, 2017
Comparison of gene expression response to neutron and x-ray irradiation using mouse bloodConstantinos G Broustas, Yanping Xu, Andrew D Harken, et al.
The Journal of Biological Chemistry|November 24, 2001
Phosphorylation of the myosin-binding subunit of myosin phosphatase by Raf-1 and inhibition of phosphatase activityConstantinos G Broustas, Nicholas Grammatikakis, Masumi Eto, et al.
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