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首页> 外文期刊>The biochemical journal >Protein stability and interaction of the nicotinic acetylcholine receptor with cholinergic ligands studied by Fourier-transform infrared spectroscopy
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Protein stability and interaction of the nicotinic acetylcholine receptor with cholinergic ligands studied by Fourier-transform infrared spectroscopy

机译:傅立叶变换红外光谱法研究烟碱乙酰胆碱受体的蛋白质稳定性和相互作用

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pBased on the conformational dependence of the amide-I i.r. band, this paper explores the use of Fourier-transform i.r. spectroscopy methods to probe structural features of proteins present in native membranes from Torpedo highly enriched in acetylcholine receptor (AcChR). The interference of water absorbance on the amide-I spectral region has been eliminated through isotopic exchange by freeze-drying the membranes in the presence of trehalose to avoid protein denaturation induced by drying, followed by resuspension in deuterated water. AcChR-rich membrane samples prepared in such a way maintained an ability to undergo affinity-state transitions and to promote cation translocation in response to cholinergic agonists, which are functional characteristics of native untreated samples. The temperature-dependence of the i.r. spectrum indicates a massive loss of ordered protein structure, occurring at temperatures similar to those reported for thermal denaturation of the AcChR by differential scanning calorimetry and by thermal inactivation of alpha-bungarotoxin-binding sites on the AcChR [Artigues, Villar, Ferragut & Gonzalez-Ros (1987) Arch. Biochem. Biophys. 258, 33-41], thus suggesting that the observed i.r. spectral changes correspond to alterations in the structure of the AcChR protein. Furthermore, the presence of detergents as well as cholinergic agonists and antagonists produces spectral changes that are also consistent with the alterations in AcChR protein structure expected from previous calorimetric studies. In contrast with the information obtained by calorimetry, i.r. spectroscopy allows the contribution of secondary structural changes to be distinguished from the overall change in protein structure. Thus prolonged exposure to cholinergic agonists, which drives the AcChR protein into the desensitized state, produces only negligible alterations in the amide-I band shape, but increases substantially the thermal stability of the protein. This suggests that rearrangements in the tertiary or quaternary structure of the protein are more likely to occur than extensive changes in secondary structure as a consequence of AcChR desensitization./p
机译:>基于酰胺基的构象依赖性。乐队,本文探讨了傅里叶变换i.r.光谱法来探测高度富含乙酰胆碱受体(AcChR)的鱼雷天然膜中蛋白质的结构特征。通过在海藻糖存在下冷冻干燥膜以避免干燥引起的蛋白质变性,然后再悬浮在氘水中,通过同位素交换消除了吸水对酰胺-I光谱区域的干扰。以这种方式制备的富含AcChR的膜样品保持了响应于胆碱能激动剂而经历亲和力状态转变和促进阳离子易位的能力,胆碱能激动剂是未经处理的天然样品的功能特征。 I.R.的温度依赖性光谱表明有序蛋白质结构的大量丧失,发生在与通过差示扫描量热法和通过在AcChR上的α-真菌毒素结合位点热灭活而使AcChR热变性所报道的温度相似的温度下[Artigues,Villar,Ferragut& Co.]。冈萨雷斯-罗斯(1987)拱门。生化。生物物理学。 258,33-41],这表明观察到的i.r.光谱变化对应于AcChR蛋白结构的变化。此外,去污剂以及胆碱能激动剂和拮抗剂的存在产生光谱变化,该变化也与先前的量热研究所预期的AcChR蛋白质结构的变化一致。与通过量热法获得的信息相反,即光谱法可以将二级结构变化的贡献与蛋白质结构的总体变化区分开。因此,长时间暴露于胆碱能激动剂会导致AcChR蛋白进入脱敏状态,但酰胺I谱带形状的变化几乎可以忽略不计,但会大大提高蛋白的热稳定性。这表明,由于AcChR脱敏作用,该蛋白质的三级或四级结构发生重排的可能性大于二级结构的广泛变化。

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