Anchored plasticity opens doors for selective inhibitor design in nitric oxide synthase
نویسندگان
چکیده
Nitric oxide synthase (NOS) enzymes synthesize nitric oxide, a signal for vasodilatation and neurotransmission at low concentrations and a defensive cytotoxin at higher concentrations. The high active site conservation among all three NOS isozymes hinders the design of selective NOS inhibitors to treat inflammation, arthritis, stroke, septic shock and cancer. Our crystal structures and mutagenesis results identified an isozyme-specific induced-fit binding mode linking a cascade of conformational changes to a new specificity pocket. Plasticity of an isozyme-specific triad of distant second- and third-shell residues modulates conformational changes of invariant first-shell residues to determine inhibitor selectivity. To design potent and selective NOS inhibitors, we developed the anchored plasticity approach: anchor an inhibitor core in a conserved binding pocket, then extend rigid bulky substituents toward remote specificity pockets, which become accessible upon conformational changes of flexible residues. This approach exemplifies general principles for the design of selective enzyme inhibitors that overcome strong active site conservation.
منابع مشابه
Structural Studies of Nitric Oxide Synthase Inhibitor Complexes: An Anchored Plasticity Approach for Selective Enzyme Inhibition
Figure 1. NOS inhibitors. X-ray structures of 6 inhibitors bound to iNOS (a-c) and eNOS (d) representative of three different pharmacophores used in this study. (a) Binding mode of small (1) and large (3) quinazolines to iNOS. (b) Binding mode of small (6) and large (9) aminopyridines to iNOS. (c) Binding mode of small (14) and large (16) bicyclic thienooxazepines to iNOS. Binding of the large ...
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عنوان ژورنال:
دوره 4 شماره
صفحات -
تاریخ انتشار 2008