首页> 美国卫生研究院文献>The Journal of Pharmacology and Experimental Therapeutics >Interactions between Cyclic Nucleotide Phosphodiesterase 11 Catalytic Site and Substrates or Tadalafil and Role of a Critical Gln-869 Hydrogen Bond
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Interactions between Cyclic Nucleotide Phosphodiesterase 11 Catalytic Site and Substrates or Tadalafil and Role of a Critical Gln-869 Hydrogen Bond

机译:环状核苷酸磷酸二酯酶11催化位点和底物或他达拉非之间的相互作用和关键的Gln-869氢键的作用。

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摘要

Poor understanding of the topography of cyclic nucleotide (CN) phosphodiesterase (PDE) catalytic sites compromises development of potent, selective inhibitors for therapeutic use. In the X-ray crystal structures of the catalytic domains of some PDEs, an invariant glutamine hydrogen bonds with groups at C6 and N1 or N7 on catalytic products or analogous positions of some inhibitors, inferring similar bonds with CNs (Nature >425:98–102, 2003; J Mol Biol >337:355–365, 2004; Mol Cell >15:279–286, 2004). A site-directed mutant (Q869A) lacking this invariant Gln in cGMP-/cAMP-hydrolyzing PDE11 had unaltered catalytic activity and affinity for sildenafil; but cGMP/cAMP or tadalafil affinity was reduced ∼50- or 140-fold, respectively, and calculated free energy of binding suggested one hydrogen bond for each. A cGMP analog lacking the C6 oxygen had ∼80-fold weakened affinity, modifications at N2, N7, or 2′-OH diminished affinity ∼16-fold, and analogs with groups appended at N1 had only 2- to 6-fold weakened affinity. Analogs with C8 substitutions were ineffective inhibitors, suggesting that cGMP binds in the anti conformation. Calculated decline in free energy of binding was consistent with that for one hydrogen bond only in the analog lacking binding potential at C6. In conclusion, Gln-869 interacts strongly with cGMP/cAMP and tadalafil, but not with sildenafil; interactions with CN analogs suggest a hydrogen bond only between Gln-869 and the C6 substituent. The results define interactions between the PDE11 catalytic site and substrates/inhibitors and advance potential for inhibitor design.
机译:对环核苷酸(CN)磷酸二酯酶(PDE)催化位点的形貌的了解不佳,会损害用于治疗用途的有效选择性抑制剂的开发。在某些PDE催化结构域的X射线晶体结构中,在某些抑制剂的催化产物或类似位置上,恒定的谷氨酰胺氢键与C6和N1或N7上的基团相连,从而推断出与CN的相似键(Nature > 425: 98-102,2003年; J Mol Biol > 337: 355-365,2004; Mol Cell > 15: 279-286,2004)。在cGMP / cAMP水解PDE11中缺少这种不变Gln的定点突变体(Q869A)具有不变的催化活性和对西地那非的亲和力。但是cGMP / cAMP或他达拉非的亲和力分别降低了约50倍或140倍,并且计算的结合自由能表明每个都有一个氢键。缺少C6氧的cGMP类似物的亲和力降低约80倍,在N 2 ,N7或2'-OH处的修饰使亲和力降低约16倍,而在N1处附加基团的类似物仅亲和力降低2至6倍。具有C8取代的类似物是无效的抑制剂,表明cGMP以反构象结合。计算的结合自由能的下降与仅在C 6上没有结合电位的类似物中一个氢键的下降相一致。总之,Gln-869与cGMP / cAMP和他达拉非有很强的相互作用,但与西地那非则没有相互作用。与CN类似物的相互作用表明仅在Gln-869和C6取代基之间存在氢键。结果定义了PDE11催化位点与底物/抑制剂之间的相互作用,并为抑制剂设计提供了潜在的可能性。

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