Hai Wu, Ph.D.

Affiliations: 
2009 University of Rochester, Rochester, NY 
Area:
Genetics, Cell Biology, Molecular Biology
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"Hai Wu"

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Dirk Bohmann grad student 2009 Rochester
 (JNK-regulated autophagy as a defensive mechanism against oxidative stress in Drosophila melanogaster.)
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Publications

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Tai PWL, Wu H, van Wijnen AJ, et al. (2017) Genome-wide DNase hypersensitivity, and occupancy of RUNX2 and CTCF reveal a highly dynamic gene regulome during MC3T3 pre-osteoblast differentiation. Plos One. 12: e0188056
Wu H, Gordon JA, Whitfield TW, et al. (2017) Chromatin Dynamics Regulate Mesenchymal Stem Cell Lineage Specification and Differentiation to Osteogenesis. Biochimica Et Biophysica Acta
Dobson JR, Hong D, Barutcu AR, et al. (2016) Identifying Nuclear Matrix-Attached DNA Across the Genome. Journal of Cellular Physiology
Grandy RA, Whitfield TW, Wu H, et al. (2015) Genome-wide Studies Reveal that H3K4me3 Modification in Bivalent Genes is Dynamically Regulated During the Pluripotent Cell Cycle and Stabilized Upon Differentiation. Molecular and Cellular Biology
Barutcu AR, Tai PW, Wu H, et al. (2014) The bone-specific Runx2-P1 promoter displays conserved three-dimensional chromatin structure with the syntenic Supt3h promoter. Nucleic Acids Research. 42: 10360-72
Tai PW, Wu H, Gordon JA, et al. (2014) Epigenetic landscape during osteoblastogenesis defines a differentiation-dependent Runx2 promoter region. Gene. 550: 1-9
Wu H, Whitfield TW, Gordon JA, et al. (2014) Genomic occupancy of Runx2 with global expression profiling identifies a novel dimension to control of osteoblastogenesis. Genome Biology. 15: R52
Tai PW, Zaidi SK, Wu H, et al. (2014) The dynamic architectural and epigenetic nuclear landscape: developing the genomic almanac of biology and disease. Journal of Cellular Physiology. 229: 711-27
McGee-Lawrence ME, Li X, Bledsoe KL, et al. (2013) Runx2 protein represses Axin2 expression in osteoblasts and is required for craniosynostosis in Axin2-deficient mice. The Journal of Biological Chemistry. 288: 5291-302
Wu H, Wang MC, Bohmann D. (2009) JNK protects Drosophila from oxidative stress by trancriptionally activating autophagy. Mechanisms of Development. 126: 624-37
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