General anaesthetics disrupt normal cell receptivity and responsive'/> The site of general anaesthesia and cytochrome P450 oxygenases: similarities defined by straight chain and cyclic alcohols
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The site of general anaesthesia and cytochrome P450 oxygenases: similarities defined by straight chain and cyclic alcohols

机译:全身麻醉的部位和细胞色素P450氧化酶:由直链和环状醇定义的相似性

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摘要

class="enumerated" style="list-style-type:decimal">General anaesthetics disrupt normal cell receptivity and responsiveness while sparing vital respiratory processes. Ultimate elucidation of the molecular basis of general anaesthesia presumes the identification of one or more subcellular components with appropriate sensitivity to the entire array of anaesthetics.Previously, we showed the universal cellular enzymes, cytochrome P450 mono-oxygenases, to be sensitive at relevant concentrations to all anaesthetics tested. The potential significance of P450 inhibition by anaesthetics resides in the contribution of this enzyme family, in conjunction with that of cyclo-oxygenases and lipoxygenases, to the generation from arachidonic acid of lipid second messengers, the eicosanoids.We have shown that P450 enzymes model the site of general anaesthesia in the tadpole with respect to (a) an absolute sensitivity to increasing chain-length series of flexible, straight chain primary and secondary alcohols and straight chain diols, (b) an absolute sensitivity to increasing molecular weight series of rigid cyclic alkanols and cyclic alkanemethanols, (c) the points of abrupt change and of reversal (cut-off) in the linear relationship between increasing anaesthetic potency with increasing carbon chain length, and (d) non-differentiation between secondary alkanol enantiomers. These findings reveal the P450 enzyme family as the most relevant biomolecular counterpart of the site of general anaesthesia, thus far identified.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 全身麻醉药会破坏正常的细胞接受能力和反应能力,同时又会保留重要的呼吸过程。最终阐明全身麻醉的分子基础是假定鉴定出一种或多种对整个麻醉剂都具有适当敏感性的亚细胞成分。 以前,我们展示了通用的细胞酶,细胞色素P450单加氧酶,在相关浓度下对所有测试的麻醉剂敏感。麻醉药抑制P450的潜在意义在于,该酶家族与环加氧酶和脂加氧酶一起对花生四烯酸生成脂类第二信使类二十烷酸的贡献。 我们已经表明,P450酶相对于(a)对增加的挠性,直链伯醇和仲醇和直链二醇的链长系列的绝对敏感性,(b)对increasing的绝对麻醉,可以模拟the中的全身麻醉部位。刚性环状烷醇和环状烷烃乙醇的分子量系列不断增加,(c)麻醉力随着碳链长度的增加而线性关系中的突然变化和逆转(截止)点,以及(d)两者之间的非差异仲链烷醇对映体。这些发现表明,迄今为止,P450酶家族是全身麻醉部位中最相关的生物分子对应物。

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