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首页> 外文期刊>Biochemistry >Synthesis and inhibitory action of novel acetogenin mimics with bovine heart mitochondrial complex I.
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Synthesis and inhibitory action of novel acetogenin mimics with bovine heart mitochondrial complex I.

机译:牛心线粒体复合物I合成新型产乙酸素的抑制作用

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Studies on the inhibition mechanism of acetogenins, the most potent inhibitors of complex I, are useful to elucidate the structural and functional features of the terminal electron-transfer step of this enzyme. We synthesized acetogenin mimics that possess two alkyl tails without a gamma-lactone ring, named Deltalac-acetogenin, and examined their inhibitory action on bovine heart mitochondrial complex I. Unexpectedly, the Deltalac-acetogenin carrying two n-undecanyl groups (compound 3) elicited very potent inhibition comparable to that of bullatacin. The inhibitory potency of compound 3 markedly decreased with shortening the length of either or both alkyl tails, indicating that symmetric as well as hydrophobic properties of the inhibitor are important for the inhibition. Both acetylation and deoxygenation of either or both of two OH groups adjacent to the tetrahydrofuran (THF) rings resulted in a significant decrease in inhibitory potency. These structural dependencies of the inhibitory action of Deltalac-acetogenins are in marked contrast to those of ordinary acetogenins. Double-inhibitor titration of steady-state complex I activity showed that inhibition of compound 3 and bullatacin are not additive, though the inhibition site of both inhibitors is downstream of iron-sulfur cluster N2. Our results indicate that the mode of inhibitory action of Deltalac-acetogenins differs from that of ordinary acetogenins. Therefore, Deltalac-acetogenins can be regarded as a novel type of inhibitor acting on the terminal electron-transfer step of complex I.
机译:研究乙酰化酶(复合物I最有效的抑制剂)的抑制机理,有助于阐明该酶末端电子转移步骤的结构和功能特征。我们合成了具有两个不带γ-内酯环的烷基尾巴的乙酸原素模拟物,称为Deltalac-acetogenin,并检查了它们对牛心脏线粒体复合体I的抑制作用。出乎意料的是,带有两个n-十一碳烯基(化合物3)的Deltalac-acetogenin抑制作用与布勒他星相当。化合物3的抑制力随着烷基末端之一或两个的长度的缩短而显着降低,表明该抑制剂的对称和疏水性质对于抑制作用很重要。与四氢呋喃(THF)环相邻的两个OH之一或两个的乙酰化和脱氧都导致抑制能力的显着降低。 Deltalac-acetogenins抑制作用的这些结构依赖性与普通acetogenins明显不同。稳态复合物I活性的双重抑制剂滴定表明,化合物3和Bullatacin的抑制作用不是累加的,尽管两种抑制剂的抑制位点均位于铁硫簇N2的下游。我们的结果表明,Deltalac-acetogenins的抑制作用模式不同于普通acetogenins。因此,Deltalac-acetogenins可以被视为作用于配合物I末端电子转移步骤的新型抑制剂。

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