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Ritodrine inhibits neuronal nitric oxide synthase, a potential link between tocolysis and autism

机译:Ritodrine抑制神经元一氧化氮合酶,这是宫缩和自闭症之间的潜在联系

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摘要

Statistical association between congenital autism and prenatal exposure to ritodrine (4-(2-((l/?,2S)-l-hydroxy-1 -(4-hy droxyphenyl)propan-2-ylamino)ethyl)phe-nol) as a tocolytic agent was a matter of concern. Moreover, neuronal nitric oxide momentous role in various behavioral and cognitive functions was reported. In this context, a correlation between prenatal exposures to ritodrine, neuronal nitric oxide level and autism occurrence must be investigated. For this reason, we proposed possible inhibition of neuronal nitric oxide synthase (nNOS) by ritodrine. An insight toward our hypothesis approval was done through docking ritodrine into the catalytic pocket of nNOS. Apparently, ritodrine shared at least five critical binding interactions with a potent nNOS inhibitor (PDB code: JI7). Subsequent in vitro experiment pointed out that ritodrine indeed inhibited the enzymatic activity of nNOS at low micromolar level. As a conclusion, ritodrine should not be used as a tocolytic agent but as a novel non peptidomimetic nNOS inhibitor lead scaffold for future optimization.
机译:先天性自闭症与产前暴露于利多君(4-(2-((l / ?, 2S)-1-羟基-1-(4-羟基苯氧基)丙烷-2-基氨基)乙基)苯丙醇的统计学联系宫缩抑制剂是一个值得关注的问题。此外,据报道神经元一氧化氮在各种行为和认知功能中起重要作用。在这种情况下,必须研究产前暴露于利多君,神经元一氧化氮水平和自闭症发生之间的相关性。因此,我们提出了利多君可能抑制神经元一氧化氮合酶(nNOS)的作用。通过将利多君对接到nNOS的催化口袋中,可以对我们的假设获得认可。显然,利多君与有效的nNOS抑制剂(PDB代码:JI7)共有至少五个关键的结合相互作用。随后的体外实验指出,利多君确实在低微摩尔水平上抑制了nNOS的酶活性。结论是,利多君不应该用作生育抑制剂,而应作为新型的非拟肽nNOS抑制剂铅支架用于未来的优化。

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