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Long bone osteoclasts display an augmented osteoclast phenotype compared to calvarial osteoclasts Zenger S, Ek-Rylander B, Andersson G Biochemical and Biophysical Research Communications, 394(3), 743, 2010 |
2 |
Molecular characterization of OsPAP2: transgenic expression of a purple acid phosphatase up-regulated in phosphate-deprived rice suspension cells Hur YJ, Jin BR, Nam J, Chung YS, Lee JH, Choi HK, Yun DJ, Yi G, Kim YH, Kim DH Biotechnology Letters, 32(1), 163, 2010 |
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Phosphatase and oxygen radical-generating activities of mammalian purple acid phosphatase are functionally independent Kaija H, Alatalo SL, Halleen JM, Lindqvist Y, Schneider G, Vaananen HK, Vihko P Biochemical and Biophysical Research Communications, 292(1), 128, 2002 |
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Rapid, catalytic hydrolysis of methionine-containing dipeptides by a dinuclear palladium(II) complex having thiolate bridging ligands Karet GB, Kostic NM Inorganic Chemistry, 37(5), 1021, 1998 |
5 |
Synthesis, molecular structure, and reactivity of dinuclear copper(II) complexes with carboxylate-rich coordination environments Holz RC, Bradshaw JM, Bennett B Inorganic Chemistry, 37(6), 1219, 1998 |
6 |
EPR Studies on the Monocobalt(II)-Substituted and Dicobalt(II)-Substituted Forms of the Aminopeptidase from Aeromonas-Proteolytica - Insight into the Catalytic Mechanism of Dinuclear Hydrolases Bennett B, Holz RC Journal of the American Chemical Society, 119(8), 1923, 1997 |
7 |
Motifs for Metallophosphatase Inhibition Myers JK, Antonelli SM, Widlanski TS Journal of the American Chemical Society, 119(13), 3163, 1997 |
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Magnetic-Interactions in (Mo4)(2-) (M = Cr(VI), Mo(VI) and W(VI)) Bridged Copper(II) and Nickel(II) Complexes Oshio H, Kikuchi T, Kikuchi K, Ito T Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals, 305, 239, 1997 |
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Recent Advances in Zinc Enzymology Lipscomb WN, Strater N Chemical Reviews, 96(7), 2375, 1996 |
10 |
Binuclear Metallohydrolases Wilcox DE Chemical Reviews, 96(7), 2435, 1996 |