Gary S Stein

Affiliations: 
University of Florida, Gainesville, Gainesville, FL, United States 
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"Gary Stein"
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Publications

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Dashti P, Lewallen EA, Gordon JAR, et al. (2024) Epigenetic regulators controlling osteogenic lineage commitment and bone formation. Bone. 117043
Tracy KM, Prior S, Trowbridge WT, et al. (2023) Bromodomain Proteins Epigenetically Regulate the Mitotically Associated lncRNA MANCR in Triple Negative Breast Cancer Cells. Critical Reviews in Eukaryotic Gene Expression. 34: 61-71
Gordon JAR, Tye CE, Banerjee B, et al. (2023) LINC01638 sustains human mesenchymal stem cell self-renewal and competency for osteogenic cell fate. Scientific Reports. 13: 20314
Gordon J, Tye CE, Banerjee B, et al. (2023) LINC01638 Sustains Human Mesenchymal Stem Cell Self-Renewal and Competency for Osteogenic Cell Fate. Research Square
Dashti P, Lewallen EA, Gordon JAR, et al. (2023) Protein arginine methyltransferases PRMT1, PRMT4/CARM1 and PRMT5 have distinct functions in control of osteoblast differentiation. Bone Reports. 19: 101704
Ghule PN, Boyd JR, Kabala F, et al. (2023) Spatiotemporal higher-order chromatin landscape of human histone gene clusters at histone locus bodies during the cell cycle in breast cancer progression. Gene. 872: 147441
Fritz AJ, Ghule PN, Toor R, et al. (2023) Spatiotemporal Epigenetic Control of the Histone Gene Chromatin Landscape during the Cell Cycle. Critical Reviews in Eukaryotic Gene Expression. 33: 85-97
El Dika M, Fritz AJ, Toor RH, et al. (2022) Epigenetic-Mediated Regulation of Gene Expression for Biological Control and Cancer: Fidelity of Mechanisms Governing the Cell Cycle. Results and Problems in Cell Differentiation. 70: 375-396
Fritz AJ, El Dika M, Toor RH, et al. (2022) Epigenetic-Mediated Regulation of Gene Expression for Biological Control and Cancer: Cell and Tissue Structure, Function, and Phenotype. Results and Problems in Cell Differentiation. 70: 339-373
Dashti P, van de Peppel J, Thaler R, et al. (2022) The lysine methyltransferases SET and MYND domain containing 2 (Smyd2) and Enhancer of Zeste 2 (Ezh2) co-regulate osteoblast proliferation and mineralization. Gene. 851: 146928
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