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Jung, H., Seong, H-A., and Ha, H. (2008) Critical role of cysteine residue 81 of macrophage migration inhibitory factor (MIF) in MIF-induced inhibition of p53 activity. J. Biol. Chem. 283, 20383-20396.
Lee, YS., Kim, DK., Kim, YD., Park, KC., Shong, M., Seong, H-A., Ha, H., and Choi, HS. (2008) Orphan Nuclear Receptor SHP Interacts with and Represses Hepatocyte Nuclear Factor-6 (HNF-6) Transactivation. Biochem. J. 413, 559-569.
Jung, H., Seong, H-A., and Ha, H. (2007) Nm23-H1 tumor suppressor and its interacting partner STRAP activate p53 function. J. Biol. Chem. 282, 35293-35307.
Takeda, K., Sasaki, A., Ha, H., Seong, H-A, and Firtel, R. A. (2007) Role of PI3 kinases in chemotaxis in Dictyostelium. J. Biol. Chem. 282, 11874-11884.
Seong, H-A., Jung, H., Kim, K-T., and Ha, H. (2007) 3-Phosphoinositide-dependent protein kinase-1 (PDK1) negatively regulates TGF-¥â-induced signaling in a kinase-dependent manner through physical interaction with SMAD proteins. J. Biol. Chem. 282, 12272-12289.
Seong, H-A., Jung, H., and Ha, H. (2007) Nm23-H1 Tumor Suppressor Physically Interacts with STRAP, a TGF-¥â receptor Interacting Protein, and Negatively Regulates TGF-¥â Signaling. J. Biol. Chem. 282, 12075-12096.
Suh, J-H., Huang, J., Park, Y-Y., Seong, H-A., Kim, D., Shong, M., Ha, H., Lee, I-K., Wang, L., and Choi, H-S. (2006) Orphan nuclear receptor SHP inhibits TGF-¥â signaling by repressing Smad3 transactivation. J. Biol. Chem. 281(51), 39169-39178
Lee, S-J., Kim, D-C., Choi, B-H., Ha, H., and Kim, K-T. (2006) Regulation of p53 by activated protein kinase C ¥ä during nitric oxide-induced dopaminergic cell death. J. Biol. Chem. 281(4), 2215-2224.
Seong, H-A., Jung, H., Choi, H-S., Kim, K-T., and Ha, H. (2005) Regulation of TGF-¥â signaling and PDK1 kinase activity by physical interaction between PDK1 and Serine-Threonine kinase receptor-associated protein. J. Biol. Chem. 280, 42897-42908.
Kim, Y-K., Lee, J-Y., Cho, HS., Lee, SS., Ha, H., Kim, S., Choi, D., and Pai, H-S. (2005) Inactivation of organellar glutamyl-and seryl-tRNA synthetases leads to developmental arrest of chloroplasts and mitochondria in higher plants. J. Biol. Chem. 280(44), 37098-370106.
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