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Journal of Cellular Biochemistry|October 21, 1998
Level of HgCl2-mediated phosphorylation of intracellular proteins determines death of thymic T-lymphocytes with or without DNA fragmentationA A Akhand, M Kato, H Suzuki, et al.Journal of Cellular Biochemistry|June 22, 2000
Mercuric chloride stimulates distinct signal transduction pathway for DNA synthesis in a T-cell line, CTLL-2J Du, H Suzuki, F Nagase, et al.European Journal of Immunology|May 1, 1997
Magnitude of protein tyrosine phosphorylation-linked signals determines growth versus death of thymic T lymphocytesA A Akhand, M Pu, J Du, et al.Journal of Cellular Biochemistry|October 1, 1996
Mercuric chloride mediates a protein sulfhydryl modification-based pathway of signal transduction for activating Src kinase which is independent of the phosphorylation/dephosphorylation of a carboxyl terminal tyrosineM Y Pu, A A Akhand, M Kato, et al.Journal of Cell Science|June 25, 1999
4-hydroxynonenal triggers an epidermal growth factor receptor-linked signal pathway for growth inhibitionW Liu, A A Akhand, M Kato, et al.The Journal of Biological Chemistry|August 28, 1999
Nitric oxide controls src kinase activity through a sulfhydryl group modification-mediated Tyr-527-independent and Tyr-416-linked mechanismA A Akhand, M Pu, T Senga, et al.Leukemia|August 22, 2003
Sustained activation of c-jun-terminal kinase (JNK) is closely related to arsenic trioxide-induced apoptosis in an acute myeloid leukemia (M2)-derived cell line, NKM-1T Kajiguchi, K Yamamoto, K Hossain, et al.Free Radical Biology & Medicine|January 16, 1999
Mercuric chloride induces increases in both cytoplasmic and nuclear free calcium ions through a protein phosphorylation-linked mechanismA Parashar, A A Akhand, R Rawar, et al.Journal of Cellular Biochemistry|March 21, 2000
Methylglyoxal induces apoptosis in Jurkat leukemia T cells by activating c-Jun N-terminal kinaseJ Du, H Suzuki, F Nagase, et al.Free Radical Biology & Medicine|November 14, 2001
Glyoxal and methylglyoxal induce lyoxal and methyglyoxal induce aggregation and inactivation of ERK in human endothelial cellsA A Akhand, K Hossain, M Kato, et al.Pageof 3