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首页> 外文期刊>Chemical biology and drug design >Dynamic Change of Heme Environment in Soluble Guanylate Cyclase and Complexation of NOIndependent Drug Agents with H-NOX Domain
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Dynamic Change of Heme Environment in Soluble Guanylate Cyclase and Complexation of NOIndependent Drug Agents with H-NOX Domain

机译:可溶性鸟苷酸环化酶中血红素环境的动态变化以及具有H-NOX结构域的NO依赖性药物的络合

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摘要

Soluble guanylate cyclase is a heterodimer receptor that functions in several signal transduction pathways. Conversion of guanosine 5'-triphosphate to 3',5'-cyclic monophosphate second messenger at the catalytic domain is regulated by the changes at heme nitric oxide ? oxygen domain of the b-subunit. To better understand conformational changes at heme site that may impact on activities of catalytic domain, three soluble guanylate cyclase homolog proteins with heme at Fe-His state were investigated, and their dynamic behaviors were monitored in both unliganded (apo) and complex with heme. As a result of dynamic conformational changes, Lys110, Asp45, Arg135, and Glu41 were found interacting with the site gate, which may interfere with transportation of small molecules in and out of the heme site. An alternative binding site adjacent to that of heme was identified. Binding affinity of several nitric oxide-independent activators and heme-dependent stimulators was examined, and their binding modes in the heme site and in the alternative binding site in the human soluble guanylate cyclase enzyme were computationally simulated. The calculated binding energies were used as criteria to filter results of virtual high-throughput screenings based on FlexX ligand-docking algorithm and absorption, distribution, metabolism, excretion, and toxicity properties on databases of available drugs. The identified drugs from virtual high-throughput screening have been suggested for experimental investigations, based on which they may either be directly repurposed or require structural modifications for better physico-chemical and pharmacological properties.
机译:可溶性鸟苷酸环化酶是一种异二聚体受体,在几种信号转导途径中起作用。鸟嘌呤一氧化氮的变化调节了鸟苷5'-三磷酸到3',5'-环一磷酸第二信使在催化域的转化。 b-亚基的氧结构域。为了更好地了解血红素位点的构象变化可能影响催化结构域的活性,研究了三种在Fe-His状态下具有血红素的可溶性鸟苷酸环化酶同源蛋白,并在未配体(apo)和复合血红素中监测了它们的动力学行为。动态构象变化的结果是,发现Lys110,Asp45,Arg135和Glu41与位点门相互作用,这可能会干扰小分子进出血红素位点。鉴定了与血红素相邻的替代结合位点。检查了几种不依赖一氧化氮的激活剂和依赖血红素的刺激剂的结合亲和力,并通过计算机模拟了它们在血红素位点和人类可溶性鸟苷酸环化酶中的替代结合位点的结合方式。计算出的结合能用作标准,以基于FlexX配体对接算法以及可用药物数据库中的吸收,分布,代谢,排泄和毒性性质,筛选虚拟高通量筛选结果。从虚拟高通量筛选中识别出的药物已被建议用于实验研究,基于这些药物,它们可以直接用于其他用途,或者需要进行结构修饰以获得更好的理化和药理特性。

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