Journal:JBSD:1

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'''Topology of inhibitor for hIMPDH-II isoforms: Attempt to design of CML cancer drug'''
'''Topology of inhibitor for hIMPDH-II isoforms: Attempt to design of CML cancer drug'''
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Stereospecific interaction or recognition of IN to C2 domain through <scene name='Journal:JBSD:1/Cv/10'>conserved water mediated salt bridge (K109 (NZ) --- D215 / D216 and K109 (NZ) --- WII1 --- D215 / D216)</scene> are observed to be unique in hIMPDH–II, which is not observed in type I isoform (1JCN). The geometrical and electronic consequences of conserved water molecular interaction as shown in Figure 5 (K109 to acidic D215 / D216 and E217) and their stereo chemical features (specially in CBS --- IN inter-domain recognition site) may be used to design the actual topology of inhibitor for hIMPDH-II isoform using water mimic inhibitor design protocol. Possibly, heterocyclic ligand with flexible structure containing two or three basic and hydrophilic groups with suitable spacer length may be implemented to design the isoform selective inhibitor for CML cancer.
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Stereospecific interaction or recognition of IN to C2 domain through <scene name='Journal:JBSD:1/Cv/12'>conserved water mediated salt bridge (K109 (NZ) --- D215 / D216 and K109 (NZ) --- WII1 --- D215 / D216)</scene> are observed to be unique in hIMPDH–II, which is not observed in type I isoform (1JCN). The geometrical and electronic consequences of conserved water molecular interaction as shown in Figure 5 (K109 to acidic D215 / D216 and E217) and their stereo chemical features (specially in CBS --- IN inter-domain recognition site) may be used to design the actual topology of inhibitor for hIMPDH-II isoform using water mimic inhibitor design protocol. Possibly, heterocyclic ligand with flexible structure containing two or three basic and hydrophilic groups with suitable spacer length may be implemented to design the isoform selective inhibitor for CML cancer.

Revision as of 09:33, 19 July 2012

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