Isabel Dominguez
Affiliations: | Boston University, Boston, MA, United States |
Area:
Molecular BiologyGoogle:
"Isabel Dominguez"
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Publications
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Guerra B, Dembic M, Siddiqui MA, et al. (2020) Down-Regulation of CK2α Leads toUp-Regulation of the Cyclin-Dependent Kinase Inhibitor p27 in Conditions Unfavorable for the Growth of Myoblast Cells. Cellular Physiology and Biochemistry : International Journal of Experimental Cellular Physiology, Biochemistry, and Pharmacology. 54: 1177-1198 |
Schaefer S, Doktor TK, Frederiksen SB, et al. (2019) Down-regulation of CK2α correlates with decreased expression levels of DNA replication minichromosome maintenance protein complex (MCM) genes. Scientific Reports. 9: 14581 |
Marivin A, Morozova V, Walawalkar I, et al. (2019) GPCR-independent activation of G proteins promotes apical cell constriction in vivo. The Journal of Cell Biology. 218: 1743-1763 |
Chua MMJ, Lee M, Dominguez I. (2017) Cancer-type dependent expression of CK2 transcripts. Plos One. 12: e0188854 |
Leyme A, Marivin A, Maziarz M, et al. (2017) Specific inhibition of GPCR-independent G protein signaling by a rationally engineered protein. Proceedings of the National Academy of Sciences of the United States of America |
Chua MM, Ortega CE, Sheikh A, et al. (2017) CK2 in Cancer: Cellular and Biochemical Mechanisms and Potential Therapeutic Target. Pharmaceuticals (Basel, Switzerland). 10 |
Marivin A, Leyme A, Parag-Sharma K, et al. (2016) Dominant-negative Gα subunits are a mechanism of dysregulated heterotrimeric G protein signaling in human disease. Science Signaling. 9: ra37 |
Ortega CE, Seidner Y, Dominguez I. (2014) Mining CK2 in cancer. Plos One. 9: e115609 |
Siriwardana NS, Meyer R, Havasi A, et al. (2014) Cell cycle-dependent chromatin shuttling of HBO1-JADE1 histone acetyl transferase (HAT) complex. Cell Cycle (Georgetown, Tex.). 13: 1885-901 |
Iskratsch T, Reijntjes S, Dwyer J, et al. (2013) Two distinct phosphorylation events govern the function of muscle FHOD3. Cellular and Molecular Life Sciences : Cmls. 70: 893-908 |