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首页> 外文期刊>Journal of Medicinal Chemistry >Molecular recognition of modified adenine nucleotides by the P2Y(1)-receptor. 2. A computational approach.
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Molecular recognition of modified adenine nucleotides by the P2Y(1)-receptor. 2. A computational approach.

机译:P2Y(1)受体修饰的腺嘌呤核苷酸的分子识别。 2.一种计算方法。

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摘要

The molecular recognition of C2- or C8-substituted ATP derivatives by the P2Y(1)-receptor (P2Y(1)-R) is analyzed using ab initio quantum mechanical calculations. Parameters that may determine ligand specificity toward P2Y(1)-R were examined on reduced models and correlated with the biochemical data for the parent compounds. These include tautomerism and protonation energy in the gas and aqueous phases, as well as molecular electrostatic potential (MEP) and dipole moment vector. The calculated electronic parameters cannot explain the inactivity of the C8-substituted ATP derivatives, nor the difference in activity among the C2-substituted ATP analogues. These results indicate that neither tautomerism nor changes in the electronic distribution of the adenine ring play a major role in determining binding specificity of adenine nucleotides to the receptor. It is suggested that the higher potency of the C2-substituted ATP derivatives, compared to ATP, might be due to interaction between the C2 side chain heteroatom and the receptor. Furthermore, the interaction of the C2 alkyl side chain with a hydrophobic pocket at the receptor binding site is suggested. In addition, NMR data in the companion paper indicate that the inactivity of the C8-substituted ATP analogues may be due to steric and conformational, rather than electronic, effects.
机译:P2Y(1)-受体(P2Y(1)-R)对C2或C8取代的ATP衍生物的分子识别是使用从头算量子力学计算进行分析的。在简化的模型上检查了可以确定对P2Y(1)-R的配体特异性的参数,并与母体化合物的生化数据相关联。这些包括气相和水相中的互变异构和质子能,以及分子静电势(MEP)和偶极矩矢量。计算的电子参数不能解释C8取代的ATP衍生物的无活性,也不能解释C2取代的ATP类似物之间的活性差异。这些结果表明,互变异构现象或腺嘌呤环的电子分布的变化都不在确定腺嘌呤核苷酸与受体的结合特异性中起主要作用。有人提出,与ATP相比,C2取代的ATP衍生物的效力更高,可能是由于C2侧链杂原子与受体之间的相互作用。此外,建议了C 2烷基侧链与受体结合位点处的疏水口袋的相互作用。另外,伴随论文中的NMR数据表明C8取代的ATP类似物的失活可能是由于空间和构象效应,而不是电子效应。

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