Insights into human eNOS, nNOS and iNOS structures and medicinal indications from statistical analyses of their interactions with bound compounds

Jianshu Dong, Dié Li, Lei Kang, Chenbing Luo, Jiangyun Wang
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Abstract

83 Structures of human nNOS, 55 structures of human eNOS, 13 structures of iNOS, and about 126 reported NOS-bound compounds are summarized and analyzed. Structural and statistical analysis show that, at least one copy of each analyzed compound binds to the active site (the substrate arginine binding site) of human NOS. And binding features of the three isoforms show differences, but the binding preference of compounds is not in the way helpful for inhibitor design targeting nNOS and iNOS, or for activator design targeting eNOS. This research shows that there is a strong structural and functional similarity between oxygenase domains of human NOS isoforms, especially the architecture, residue composition, size, shape, and distribution profile of hydrophobicity, polarity and charge of the active site. The selectivity and efficacy of inhibitors over the rest of isoforms rely a lot on chance and randomness. Further increase of selectivity via rational improvement is uncertain, unpredictable and unreliable, therefore, to achieve high selectivity through targeting this site is complicated and requires combinative investigation. After analysis on the current two targeting sites in NOS, the highly conserved arginine binding pocket and H4B binding pocket, new potential drug-targeting sites are proposed based on structure and sequence profiling. This comprehensive analysis on the structure and interaction profiles of human NOS and bound compounds provides fresh insights for drug discovery and pharmacological research, and the new discovery here is practically applied to guide protein-structure based drug discovery.
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通过统计分析人类eNOS、nNOS和iNOS与结合化合物的相互作用,了解它们的结构和药物适应症
总结分析了83种人类nNOS结构、55种人类eNOS结构、13种iNOS结构以及126种已报道的nos结合化合物。结构和统计分析表明,所分析的每种化合物至少有一个拷贝与人类NOS的活性位点(底物精氨酸结合位点)结合,并且三种同工异构体的结合特征存在差异,但化合物的结合偏好不利于设计针对nNOS和iNOS的抑制剂,也不利于设计针对eNOS的激活剂。本研究表明,人类NOS同工异构体的加氧酶结构域在结构、残基组成、大小、形状以及活性位点的疏水性、极性和电荷分布等方面具有很强的相似性。抑制剂的选择性和有效性在很大程度上依赖于机会和随机性。通过合理改进进一步提高选择性是不确定的、不可预测的和不可靠的,因此,通过靶向该位点实现高选择性是复杂的,需要综合研究。通过对NOS中高度保守的精氨酸结合袋和H4B结合袋这两个靶点的分析,基于结构和序列分析提出了新的潜在药物靶点。对人体NOS及其结合化合物的结构和相互作用谱的全面分析为药物发现和药理学研究提供了新的见解,并在实际应用中指导基于蛋白质结构的药物发现。
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