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Biological systems protein tyrosine phosphatase

The use of QM-MD as opposed to QM-MM minimization techniques is computationally intensive and thus precluded the use of an ab initio or density functional method for the quantum region. This study was performed with an AMi Hamiltonian, and the first step of the dephosphorylation reaction was studied (see Fig. 4). Because of the important role that phosphorus has in biological systems [62], phosphatase reactions have been studied extensively [63]. From experimental data it is believed that Cys-i2 and Asp-i29 residues are involved in the first step of the dephosphorylation reaction of BPTP [64,65]. Alaliambra et al. [30] included the side chains of the phosphorylated tyrosine, Cys-i2, and Asp-i 29 in the quantum region, with link atoms used at the quantum/classical boundaries. In this study the protein was not truncated and was surrounded with a 24 A radius sphere of water molecules. Stochastic boundary methods were applied [66]. [Pg.230]


See other pages where Biological systems protein tyrosine phosphatase is mentioned: [Pg.263]    [Pg.176]    [Pg.196]    [Pg.53]    [Pg.111]    [Pg.305]    [Pg.3111]    [Pg.229]    [Pg.207]    [Pg.560]    [Pg.1883]    [Pg.1895]    [Pg.194]   
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