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首页> 外文期刊>The FEBS journal >Molecular determinants of prokaryotic voltage-gated sodium channels for recognition of local anesthetics
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Molecular determinants of prokaryotic voltage-gated sodium channels for recognition of local anesthetics

机译:用于识别局部麻醉剂的原核电压门控钠通道的分子决定因素

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摘要

Local anesthetics (LAs) inhibit mammalian voltage-gated Na+ channels (Navs) and are thus clinically important. LAs also inhibit prokaryotic Navs (BacNavs), which have a simpler structure than mammalian Navs. To elucidate the detailed mechanisms of LA inhibition to BacNavs, we used NavBh, a BacNav from Bacillus halodurans, to analyze the interactions of several LAs and quaternary ammoniums (QAs). Based on the chemical similarity of QA with the tertiary-alkylamine (TAA) group of LAs, QAs were used to determine the residues required for the recognition of TAA by NavBh. We confirmed that two residues, Thr220 and Phe227, are important for LA binding; a methyl group of Thr220 is important for recognizing both QAs and LAs, whereas Phe227 is involved in holding blockers at the binding site. In addition, we found that NavBh holds blockers in a closed state, consistent with the large inner cavity observed in the crystal structures of BacNavs. These findings reveal the inhibition mechanism of LAs in NavBh, where the methyl group of Thr220 provides the main receptor site for the TAA group and the bulky phenyl group of Phe227 holds the blockers inside the large inner cavity. These two residues correspond to the two LA recognition residues in mammalian Navs, which suggests the relevance of the LA recognition between BacNavs and mammalian Navs.
机译:局部麻醉剂(LAS)抑制哺乳动物电压门控NA +通道(导航),因此临床上很重要。 LAS还抑制原核导航(BACNAV),其具有比哺乳动物导航更简单的结构。为了阐明La抑制对Bacnavs的详细机制,我们使用来自Bacillus Halodurans的Bacnav,分析几种LAS和季铵(QAS)的相互作用。基于QA与叔烷基胺(TAA)LAS组的化学相似性,用于通过纳米识别TAA所需的残留物。我们证实,两个残留物,Thr220和PHE227对La结合很重要; THR220的甲基对于识别QAS和LAS是重要的,而PHE227涉及在结合位点保持阻滞剂。此外,我们发现NavbH以闭合状态保持阻挡者,与在Bacnavs的晶体结构中观察到的大型内腔一致。这些发现揭示了纳米LAS中LAS的抑制机制,其中THR220的甲基提供了TAA基团的主要受体位点,并且PHE227的庞大苯基的苯基保持在大内腔内的阻挡剂。这两个残留物对应于哺乳动物导航中的两个La识别残留物,这表明Bacnavs和哺乳动物导航之间的La认可的相关性。

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