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Fluorescence, circular dichroism, NMR, and docking studies of the interaction of the alkaloid malbrancheamide with calmodulin

机译:荧光,圆二色性,NMR和生物碱麦芽糖酰胺与钙调蛋白相互作用的对接研究

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A new malbrancheamide analogue, isomalbrancheamide B (3), along with three known compounds, malbrancheamide (1), isomalbrancheamide (2), and premalbrancheamide (4), were isolated in higher yields from the alkaloid fraction of the fungus Malbranchea aurantiaca. The interaction of the alkaloids 1–4 with calmodulin (CaM) was analyzed using different enzymatic, fluorescence, spectroscopic, nuclear magnetic resonance (NMR), and molecular modelling techniques. On the basis of the enzymatic and fluorescence experiments, malbrancheamides 1–3 are classical CaM inhibitors. Compound 4, however, did not quench the extrinsic fluorescence of the CaM biosensor indicating that it could be a functional inhibitor. Circular dichroism, NMR, and molecular modelling studies revealed that 1 binds to CaM in the same hydrophobic pocket than the chlorpromazine and trifluoperazine, two classical CaM inhibitors. Thus, malbrancheamide and related monochlorinated analogues are compounds with a high potential for the development of new therapeutic agents, involving CaM as their molecular target.
机译:从真菌Malbranchea aurantiaca的生物碱部分中以较高的收率分离了一种新的malbrancheamide类似物isomalbrancheamide B(3),以及三种已知的化合物malbrancheamide(1),isomallbrancheamide(2)和premalbrancheamide(4)。使用不同的酶促,荧光,光谱,核磁共振(NMR)和分子建模技术分析了生物碱1-4与钙调蛋白(CaM)的相互作用。根据酶促和荧光实验,malbrancheamides 1-3是经典的CaM抑制剂。但是,化合物4并未淬灭CaM生物传感器的外部荧光,表明它可能是功能性抑制剂。圆二色性,NMR和分子模型研究表明,与两种经典的CaM抑制剂氯丙嗪和三氟哌嗪相比,1在同一疏水口袋中与CaM结合。因此,丙二酰胺和相关的单氯化类似物是具有开发潜在新化合物的高潜力的化合物,涉及CaM作为其分子靶标。

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